The Younger Dryas impact hypothesis (YDIH) or Clovis comet hypothesis is a speculative attempt to explain the onset of the Younger Dryas (YD) cooling at the end of the Last Glacial Period, around 12,900 years ago. The hypothesis is controversial and not widely accepted by relevant experts.[1][2][3]
It is an alternative to the long-standing and widely accepted explanation that it was caused by a significant reduction in, or shutdown of the North Atlantic Conveyor due to a sudden influx of freshwater from Lake Agassiz and deglaciation in North America.[4][5][6][7] The YDIH posits that fragments of a large (more than 4 kilometers in diameter), disintegrating asteroid or comet struck North America, South America, Europe, and western Asia, coinciding with the beginning of the Younger Dryas cooling event. Advocates proposed the existence of a Younger Dryas boundary (YDB) layer that can be identified by materials they interpret as evidence of multiple meteor air bursts and/or impacts across a large fraction of Earth’s surface.[8] However, inconsistencies have been identified in the graphs they published, and authors have not yet responded to requests for clarification and have never made their raw data available.[9] Some YDIH proponents have also proposed that this event triggered extensive biomass burning, a brief impact winter and the Younger Dryas abrupt climate change, contributed to extinctions of late Pleistocene megafauna, and resulted in the end of the Clovis culture.[10][11]
Members of this group have been criticized for promoting pseudoscience, pseudoarchaeology, and pseudohistory, engaging in cherry-picking of data based on confirmation bias, seeking to persuade via the bandwagon fallacy, and even engaging in intentional misrepresentations of archaeological and geological evidence. For example, physicistMark Boslough, a specialist in planetary impact hazards and asteroid impact avoidance, has pointed out many problems with the credibility and motivations of individual CRG researchers and also with their specific claims for evidence in support of the YDIH and/or the effects of meteor air bursts or impact events on ancient settlements, people, and environments.[12]
Many doubts have been raised about several of the CRG's other claims.[13] Image forensics expert Elisabeth Bik discovered evidence for digital alteration of images used as evidence for the claim that the village of Tall el-Hammam was engulfed by an airburst.[14] CRG members initially denied tampering with the photos but eventually published a correction in which they admitted to inappropriate image manipulation.[15] Five of the paper's 53 images received retouching to remove labels and arrows present in other published versions of the photos, which Bik believed to be a possible conflict with Scientific Reports' image submission guidelines but was not in itself a disproval of the Tall el-Hammam airburst theory.[16] Subsequent concerns that have been brought up in PubPeer have not yet been addressed by the CRG, including discrepancies between claimed blast wave direction compared to what the images show, unavailability of original image data to independent researchers, lack of supporting evidence for conclusions, inappropriate reliance on young Earth creationist literature, misinformation about the Tunguska explosion, and another uncorrected example of an inappropriately altered image.[17] On February 15, 2023, the following editor’s note was posted on this paper, "Readers are alerted that concerns raised about the data presented and the conclusions of this article are being considered by the Editors. A further editorial response will follow the resolution of these issues."[18] On August 30, 2023, a paper authored by a CRG member and leading YDIH advocate was retracted by Scientific Reports. The journal's Retraction Note cited a publication "indicating that the study does not provide data to support the claims of an airburst event or that such an event led to the decline of the Hopewell culture."[19]
Evidence
Proponents believe that certain microscopic debris is evidence of impact and that "black mats" of sediment are evidence of widespread fires. They contend that extinction of megafauna was synchronous with associated effects on prehistoric human societies. They say that their observations and interpretations cannot be adequately explained by volcanic, anthropogenic, or other natural processes.[20] They argue that there is a synchronous Younger Dryas boundary layer that should be used as a local,[21] or even global[22]stratigraphic marker. Archaeologist Stuart J Fiedel has remarked that "The bolide and its effects have been characterized inconsistently from one paper to the next, which makes this hypothesis difficult to refute."[23] In 2011, a review of the evidence lead researchers to state "The YD impact hypothesis provides a cautionary tale for researchers, the scientific community, the press, and the broader public." as "none of the original YD impact signatures have been subsequently corroborated by independent tests. Of the 12 original lines of evidence, seven have so far proven to be non-reproducible. The remaining signatures instead seem to represent either (1) non-catastrophic mechanisms, and/or (2) terrestrial rather than extraterrestrial or impact-related sources. In all of these cases, sparse but ubiquitous materials seem to have been misreported and misinterpreted as singular peaks at the onset of the YD. Throughout the arc of this hypothesis, recognized and expected impact markers were not found, leading to proposed YD impactors and impact processes that were novel, self-contradictory, rapidly changing, and sometimes defying the laws of physics."[24] Additionally, a comprehensive refutation of the Younger Dryas Impact Hypothesis was published in 2023, stating "There is no support for the basic premise of the YDIH that human populations were diminished, and individual species of late Pleistocene megafauna became extinct or were diminished due to catastrophe. Evidence and arguments purported to support the YDIH involve flawed methodologies, inappropriate assumptions, questionable conclusions, misstatements of fact, misleading information, unsupported claims, irreproducible observations, logical fallacies, and selected omission of contrary information."[25]
Hypothetical impact markers
Proponents have reported materials including nanodiamonds, metallic microspherules, carbon spherules, magnetic spherules, iridium, platinum, platinum/palladium ratios, charcoal, soot, and fullerenes enriched with helium-3 that they interpret as evidence for an impact event that marks the beginning of the Younger Dryas.[4][26] One of the most widely publicized discoveries (nanodiamonds in Greenland) has never been verified and is disputed.[27]
Some scientists have asserted that the carbon spherules originated as fungal structures and/or insect fecal pellets, and contained modern contaminants[28][29] and that the claimed nanodiamonds are actually misidentified graphene and graphene/graphane oxide aggregates.[30][31] Interestingly, Allen West and James Kennett had filed a patent for the formation of nanodiamonds on Jan 22, 2009 with a provisional patent roughly one year prior[32] Iridium, magnetic minerals, microspherules, carbon, and nanodiamonds are all subject to differing interpretations as to their nature and origin, and may be explained in many cases by purely terrestrial or non-catastrophic factors.[33][34] An analysis of a similar Younger Dryas boundary layer in Belgium yielded carbon crystalline structures such as nanodiamonds, but the authors concluded that they also did not show unique evidence for a bolide impact.[35] An independent group of researchers reported much lower concentrations of platinum group metals in the purported boundary layer (by a factor of 30 for iridium).[lower-alpha 1][36][38] The original authors argued that these concentrations were still >300% (a factor of 3) above background in 2 of their samples.[39] Another group was unable to confirm prior claims of magnetic particles and microspherules in 2009,[40] Other studies involving YDIH proponents found concentrations of magnetic spherules but not all were associated with the YDB and not all were attributed to an ET event.[41][42][43][44][45]
"Black mats"
The evidence given by proponents of a bolide or meteorite impact event includes "black mats", or strata of organic-rich soil that have been identified at about 50 archaeological sites across North America.[lower-alpha 2] Using statistical analysis and modeling, James P. Kennett and others concluded that widely separated organic-rich layers, including black mats, were deposited synchronously across multiple continents as an identifiable Younger Dryas boundary layer.[48] In 2019, Jorgeson and others tested this conclusion with the simulation of radiocarbon ages.[49] They accounted for measurement error, calibration uncertainty, "old wood" effects, and laboratory measurement biases, and compared against the dataset of radiocarbon ages for the Laacher See eruption. They found the Laacher See 14C dataset to be consistent with expectations of synchroneity. They found the Younger Dryas boundary layer 14C dataset to be inconsistent with the expectations for its synchroneity, and the synchronous global deposition of the hypothesized Younger Dryas boundary layer to be extremely unlikely.[49]
Marlon et al. suggest that wildfires were a consequence of rapid climate change.[50] "The changes in woody biomass, fire frequency, and biomass burning are not coincident with changes in CO2, although increasing CO2 may have contributed to woody biomass production during the early part of the Bølling–Allerød. Clovis people appeared in North America between 13.4 and 12.8 ka, broadly coincident with the sharp increase in biomass burning at 13.2 ka, and then rapidly spread out across the continent."
Radiocarbon dating, microscopy of paleobotanical samples, and analytical pyrolysis of fluvial sediments in Arlington Canyon on Santa Rosa Island by another group found no evidence of lonsdaleite or impact-induced fires.[51] Research published in 2012 has shown that the so-called "black mats" are easily explained by typical earth processes in wetland environments.[lower-alpha 3][52] The study of black mats, that are common in prehistorical wetland deposits which represent shallow marshlands, that were from 6000 to 40,000 years ago in the southwestern USA and Atacama Desert in Chile, showed elevated concentrations of iridium and magnetic sediments, magnetic spherules and titanomagnetite grains. It was suggested that because these markers are found within or at the base of black mats, irrespective of age or location, they likely arise from processes common to wetland systems and not as a result of catastrophic bolide impacts.[lower-alpha 3][52]
Researchers have also criticized the conclusions of various studies for incorrect age-dating of the sediments,[53] contamination by modern carbon, inconsistent hypothesis that made it difficult to predict the type and size of bolide,[54] lack of proper identification of lonsdaleite,[55] confusing an extraterrestrial impact with other causes such as fire,[56] and for inconsistent use of the carbon spherule "proxy".[57] Naturally occurring lonsdaleite has also been identified in non-bolide diamond placer deposits in the Sakha Republic.[58]
Extinction of megafauna
There is evidence that the megafaunal extinctions that occurred across northern Eurasia, North America, and South America at the end of the Pleistocene were not synchronous. The extinctions in South America appear to have occurred at least 400 years after the extinctions in North America.[59][60][61] The extinction of woolly mammoths in Siberia also appears to have occurred later than in North America.[59] A greater disparity in extinction timings is apparent in island megafaunal extinctions that lagged nearby continental extinctions by thousands of years; examples include the survival of woolly mammoths on Wrangel Island, Russia, until 3700 BP,[59][60][62] and the survival of ground sloths in the Antilles,[63] the Caribbean, until 4700 cal BP.[59] The Australian megafaunal extinctions occurred approximately 30,000 years earlier than the hypothetical Younger Dryas event.[64]
The megafaunal extinction pattern observed in North America poses a problem for the bolide impact scenario since it raises the question of why large mammals should be preferentially exterminated over small mammals or other vertebrates.[65] Additionally, some extant megafaunal species such as bison and brown bear seem to have been little affected by the extinction event, while the environmental devastation caused by a bolide impact would not be expected to discriminate.[59] Also, it appears that there was a collapse in North American megafaunal population from 14,800 to 13,700 BP, well before the date of the hypothetical extraterrestrial impact,[66] possibly from anthropogenic activities, including hunting.[67]
A group in the Netherlands examined carbon-14 dates for charcoal particles that showed wildfires occurred well after the proposed impact date, and the glass-like carbon was produced by wildfires and no lonsdaleite was found.[68] Research at the Atacama Desert in Chile showed that silicate surface glasses were formed during at least two distinct periods at the end of the Pleistocene, separated by several hundred years.[69][needs update]
Impact on human societies
A study of Paleoindian demography found no evidence of a population decline among the Paleoindians at 12,900 ± 100 BP, which was inconsistent with predictions of an impact event.[70] They suggested that the hypothesis would probably need to be revised.[71][72]Template:Text-source inline A critique of the Buchanan paper[71] concluded that these results were an insensitive, low-fidelity population proxy incapable of detecting demographic change.[73] The authors of a subsequent paper described three approaches to population dynamics in the Younger Dryas in North America, and concluded that there had been a significant decline and/or reorganisation in human population early in this period. The same paper also shows an apparent resurgence in population and/or settlements in the later Younger Dryas.[74] A 2022 study by an independent group presents genomic evidence that a previously unidentified pre-18,000 BP South American population suffered a major disruption at the Younger Dryas onset, resulting in a significant loss of lineages and a Y chromosome bottleneck.[75]
Hiawatha crater
File:Hiawatha v45 scene1 4k 5mtopo.1760.tif
A 2018 paper reported the discovery of an impact crater under the Hiawatha Glacier in Greenland of unknown age.[76] Kurt Kjær, the lead author of the paper, speculated that it might date to the Pleistocene (2.58 million to 11,700 years ago), and mentioned a possible connection to the Younger Dryas.[77]
A number of other hypotheses have been put forward about the cause of the Younger Dryas climate event.
Mainstream explanation
The most widely accepted explanation is that it began because of a significant reduction or shutdown of the North Atlantic "Conveyor" – which circulates warm tropical waters northward – as the consequence of deglaciation in North America. Geological evidence for such an event is not fully secure,[80] but recent work has identified a pathway along the Mackenzie River that would have spilled fresh water from Lake Agassiz into the Arctic and thence into the Atlantic.[81][82] The global climate would then have become locked into the new state until freezing removed the fresh water "lid" from the North Atlantic.
Other alternatives
Another hypothesis suggests instead that the jet stream shifted northward in response to the melting of the North American ice sheet, which brought more rain to the North Atlantic, which freshened the ocean surface enough to slow the thermohaline circulation.[83]
Another proposed cause has been volcanic activity.[84][85] However, this has been challenged recently due to improved dating of the most likely suspect, the Laacher See volcano. In 2021, research by Frederick Reinig et al. precisely dated the eruption to 200 ± 21 years before the onset of the Younger Dryas, therefore ruling it out as a culprit.[86] The same study also concluded that the onset took place synchronously over the entire North Atlantic and Central European region. A press release from the University of Mainz stated, "Due to the new dating, the European archives now have to be temporally adapted. At the same time, a previously existing temporal difference to the data from the Greenland ice cores was closed."[87]
History
The idea that a comet struck North America at the end of the last ice age was first proposed as a speculative premise by the American congressman and pseudohistorian Ignatius Donnelly in 1883, who suggested it formed the Great Lakes and caused a sudden extreme cold period, which devastated animal and human populations.[2]
In 2001, Richard Firestone and William Topping published their first version of the YDIH, "Terrestrial Evidence of a Nuclear Catastrophe in Paleoindian Times" in Mammoth Trumpet, a newsletter of the Center for the Study of the First Americans.[88] They proposed that "the entire Great Lakes region (and beyond) was subjected to a particle bombardment and a catastrophic nuclear radiation..." They argue that this cataclysm generated a shock wave that gouged out the Carolina Bays and reset the radiocarbon clock. Most geologists today interpret the Carolina bays as relict geomorphological features that developed via various eolian and lacustrine processes. Multiple lines of evidence, e.g. radiocarbon dating, optically stimulated luminescence dating, and palynology, indicate that the Carolina bays predate the start of the Holocene. Fossil pollen recovered from cores of undisturbed sediment taken from various Carolina bays in North Carolina by Frey,[89][90] Watts,[91] and Whitehead[92][93] document the presence of full glacial pollen zones within the sediments filling some Carolina bays. The range of dates can be interpreted that Carolina bays were either created episodically over the last tens of thousands of years or were created at time over a hundred thousand years ago and have since been episodically modified.[94][95][96] Recent work by the U.S. Geological Survey[97] has interpreted the Carolina bays as relict thermokarst lakes that have been modified by eolian and lacustrine processes. Modern thermokarst lakes are common today around Barrow (Alaska), and the long axes of these lakes are oblique to the prevailing wind direction.
In 2006, The Cycle of Cosmic Catastrophes: How a Stone-Age Comet Changed the Course of World Culture, a trade book by Richard Firestone, Allen West and Simon Warwick-Smith, was published by Inner Traditions – Bear & Company and marketed in the category of Earth Changes. It proposed that a large meteor air burst or impact of one or more comets initiated the Younger Dryas cold period about 12,900 BPcalibrated (10,900 14C uncalibrated) years ago.[98]
In May 2007, at a meeting of the American Geophysical Union in Acapulco, Firestone, West, and around twenty other scientists made their first formal presentation of the hypothesis.[99][4][100] Later that year, the group published a paper in the Proceedings of the National Academy of Sciences (PNAS) that suggested the impact event may have led to an immediate decline in human populations in North America.[8] Since this paper was considered too controversial for standard peer review, it was handled by a specially selected 'personal editor' who was friendly to the hypothesis.[7]
In 2008, C. Vance Haynes Jr. published data to support the synchronous nature of the black mats,[lower-alpha 2] emphasizing that independent analysis of other Clovis sites was required to support the hypothesis. He was skeptical of the bolide impact as the cause of the Younger Dryas and associated megafauna extinction but concluded "... something major happened at 10,900 YBP (14C uncalibrated) that we have yet to understand."[101] The first debate between proponents and skeptics was held at the 2008 Pecos Conference in Flagstaff, Arizona.[102][103]
In 2009, a paper in the journal Science asserted that nanodiamonds were evidence for a swarm of carbonaceous chondrites or comet fragments from air burst(s) or impact(s) that set parts of North America on fire, caused the extinction of most of the megafauna in North America, and led to the demise of the Clovis culture.[104][105] A special debate-style session was convened at the 2009 AGU Fall Meeting in which skeptics and supporters alternated in giving presentations.[106]
In 2010, astronomer William Napier published a model suggesting that fragments of a comet—initially 50 to 100 kilometers in diameter—could have been responsible for such an impact, and that the Taurid complex is formed of the remaining debris.
In 2011, a group of scientists challenged the Younger Dryas impact hypothesis on the basis that most of the conclusions could not be reproduced and were a misinterpretation of data.[107] Skepticism increased when it was reported that one of the lead authors of the original paper had practiced geophysics without a license.[lower-alpha 5][108][109] Around that time, other articles stated that no nanodiamonds were found[30] and that the supposed carbon spherules could be fungus or insect feces and included modern contaminants.[28][29] In response, in June 2013 some of the original proponents published a re-evaluation of spherules from eighteen sites worldwide that they interpret as supporting their hypothesis.[26]
In 2012, another paper in PNAS reported the discovery of scoria like objects (SLO) and speculated that they were formed from a meteorite impact or airburst.[20] Post-publication review of this paper suggests that at least some of these SLOs are anthropogenic.[110] Another group of scientists reported evidence supporting a modified version of the hypothesis—involving a fragmented comet or asteroid—was found in lake bed cores dating to 12,900 YBP from Lake Cuitzeo in Guanajuato, Mexico. It included nanodiamonds (including the hexagonal form called lonsdaleite), carbon spherules, and magnetic spherules. Multiple hypotheses were examined to account for these observations, though none were believed to be terrestrial. Lonsdaleite occurs naturally in asteroids and cosmic dust and as a result of extraterrestrial impacts on Earth.[111] Lonsdaleite has also been made artificially in laboratories.[112][58][relevant? – discuss]
In 2013, scientists reported a hundredfold spike in the concentration of platinum in Greenland ice cores roughly dated to 12,890 YBP.[113] This anomaly was attributed to a small local iron meteorite fall without any widespread consequences.[114] A refutation of the YDIH,[2] coauthored by the lead author of the 2013 Greenland Pt anomaly paper, showed that the Pt spike was not evidence to support the YDIH because it occurred 20 years after the YDB.
In 2016, a report on further analysis of Younger Dryas boundary sediments at nine sites found no evidence of an extraterrestrial impact at the Younger Dryas boundary.[115] Also that year, an analysis of nanodiamond evidence failed to uncover lonsdaleite or a spike in nanodiamond concentration at the YDB.[116]
In 2017, Comet Research Group scientists reported a Pt anomaly at eleven continental sites dated to the Younger Dryas, which is linked with the Greenland Platinum anomaly.[117]
In 2018, two papers were published by the Comet Research Group dealing with an "extraordinary biomass-burning episode" associated with the Younger Dryas Impact.[118][119][120] However, these claims of extraordinary fires are disputed.[121][122]
A map from Mario Pino et al. 2019 [123] showing 53 Younger Dryas boundary sites. Orange dots represent 28 sites with peaks in both platinum (Pt) and other impact proxies such as high-temperature Fe-rich spherules. Red dots represent 24 sites with impact proxies but lacking Pt measurements.
In 2019, Comet Research Group scientists reported evidence in sediment layers with charcoal and pollen assemblages both indicating major disturbances at Pilauco Bajo, Chile in sediments dated to 12,800 BP.[123] This included rare metallic spherules, melt glass and nanodiamonds thought to have been produced during airbursts or impacts.[123] Pilauco Bajo is the southernmost site where evidence of the Younger Dryas impacts has been reported. This has been interpreted as evidence that a strewn field from the Younger Dryas impact event may have affected at least 30% of Earth's radius.[123] Also in 2019, analysis of age-dated sediments from a long-lived pond in South Carolina showed not just an overabundance of platinum but a platinum/palladium ratio inconsistent with a terrestrial origin, as well as an overabundance of soot and a decrease in fungal spores associated with the dung of large herbivores, suggesting large-scale regional wildfires and at least a local decrease in ice age megafauna.[124]
In 2019, a paper was published suggesting that a ~10 ppb platinum (Pt) enrichment in peat deposits at Wonderkrater in South Africa was associated with the YDB, although the age uncertainty range of the anomaly exceeded 2 thousand years.[125]
In 2019 research at White Pond near Elgin, South Carolina, conducted by Christopher Moore from the University of South Carolina and 16 colleagues, used a core to extract sediment samples from underneath the pond. The samples, dated by radiocarbon to the beginning of the Younger Dryas, were found to contain a large platinum anomaly, consistent with findings from other sites. A large soot anomaly was also found in cores from the site.[126][127]
In 2020, a group led by Andrew M. T. Moore found high concentrations of iridium, platinum, nickel, and cobalt at the Younger Dryas boundary in material from Tell Abu Hureyra. They concluded that the evidence supports the impact hypothesis.[128][129][130] However, samples from the site no longer exist so these results cannot be confirmed.[131]
In 2022, a paper by Younger Dryas impact proponent James L. Powell investigated what he described as the "premature rejection"[3] of the Younger Dryas Impact Hypothesis, saying that substantial evidence existed. In the review, Powell describes how, soon after the hypothesis was first published, a few scientists reported that they were unable to replicate the critical evidence and the scientific community at large came to reject the hypothesis. Powell argues that since then, many independent studies have reproduced that evidence at dozens of YD sites.[3]
In stark contrast, a 2023 article by planetary impact physicist Mark Boslough stated that "...the YDIH has never been accepted by experts in any related field" because it is "plagued by self contradictions, logical fallacies, basic misunderstandings, misidentified impact evidence, abandoned claims, irreproducible results, questionable protocols, lack of disclosure, secretiveness, failed predictions, contaminated samples, pseudoscientific arguments, physically impossible mechanisms, and misrepresentations".[1]
In popular culture
The impact hypothesis has been the subject of documentaries,[132] including Mammoth Mystery on National Geographic Explorer (2007),[133]Journey to 10,000 BC on the History Channel (2008),[134]Survival Earth on Channel 4 (2008), and Megabeasts' Sudden Death on PBS Nova (2009).[135][136][137]
Graham Hancock argued in his 2015 book Magicians of the Gods that the Younger Dryas comet destroyed the earth in a time cycle and that it was responsible for the Noahide flood myth. He inferred that this myth was widespread elsewhere on earth by comparing it with the flood mythology of other peoples.[138][139] These claims were criticized as inaccurate by independent reviewers, including Jason Colavito, Michael Shermer, and Marc J. Defant.[lower-alpha 6][140][141][142] Hancock expanded on his claims in a subsequent book, America Before: The Key to Earth's Lost Civilization (2019), in which he claimed that the Younger Dryas catastrophe had wiped out all traces of a sophisticated Ice Age civilization in North America.[143]
In 2017, a debate was held on the Joe Rogan Experience between proponents[clarification needed] Graham Hancock, Randall Carlson, and Malcolm A. LeCompte and opponents Michael Shermer and Marc J. Defant.[lower-alpha 6][146] The week that the podcast was released, the network was reportedly averaging over 120 million downloads a month.[147]
A 2021 episode of the Science Channel series Ancient Unexplained Files had a segment on the evidence from Abu Hureyra;[128] geoscientist Sian Proctor also described the impact hypothesis as a whole.[148]
See also
Earth:Carolina bays – Elliptical depressions concentrated along the Atlantic seaboard of North America
↑One of the authors of this study, Matthew Boyd,[36] later published a paper that argued in favour of the impact hypothesis.[37]
↑ 2.02.1The darkened stratum was first identified at the Lehner Mammoth-Kill Site by Emil Haury who named it "Lehner swamp soil";[46] it was later renamed by Vance Haynes as the "black mat".[47][8]
↑ 3.03.1Pigati has noted that his 2012 paper [52] does not disprove the impact hypothesis.[34]
↑This paper's co-authors include Kurt Kjær and Elizabeth Silber
↑Allen West had the conviction expunged after the matter was reported on by Rex Dalton. West (originally Allen Whitt until he changed his name legally in 2006) is described as having no formal academic affiliation and a degree from a Bible college which he wouldn't name.[108][109]
↑ 2.02.12.2Holliday, Vance T.; Daulton, Tyrone L.; Bartlein, Patrick J.; Boslough, Mark B.; Breslawski, Ryan P.; Fisher, Abigail E.; Jorgeson, Ian A.; Scott, Andrew C. et al. (2023-07-26). "Comprehensive refutation of the Younger Dryas Impact Hypothesis (YDIH)" (in en). Earth-Science Reviews247: 104502. doi:10.1016/j.earscirev.2023.104502.
↑Sun et al. (2020), p. 1: "The prevailing hypothesis is that the cooling and stratification of the North Atlantic Ocean were a consequence of massive ice sheet discharge of meltwater and icebergs and resulted in reduction or cessation of the North Atlantic Conveyor."
↑Powell (2022), p. 1: "The hypothesis proposes that the airburst or impact of a comet ~12,850 years ago caused the ensuing ~1200-year-long Younger Dryas (YD) cool period and contributed to the extinction of the Pleistocene megafauna in the Western Hemisphere and the disappearance of the Clovis PaleoIndian culture."
↑Pino et al. (2019), p. 1: "The Younger Dryas (YD) impact hypothesis posits that fragments of a large, disintegrating asteroid/comet struck North America, South America, Europe, and western Asia ~12,800 years ago. Multiple airbursts/impacts produced the YD boundary layer (YDB), depositing peak concentrations of platinum, high-temperature spherules, meltglass, and nanodiamonds, forming an isochronous datum at >50 sites across ~50 million km² of Earth's surface. This proposed event triggered extensive biomass burning, brief impact winter, YD climate change, and contributed to extinctions of late Pleistocene megafauna."
↑Bunch, Ted E.; LeCompte, Malcolm A.; Adedeji, A. Victor; Wittke, James H.; Burleigh, T. David; Hermes, Robert E.; Mooney, Charles; Batchelor, Dale et al., WikidataQ111021706
↑Andronikov, Alexandre V.; Andronikova, Irina E.; Loehn, Clayton W.; Lafuente, Barbara; Ballenger, Jesse A. M.; Crawford, George T.; Lauretta, Dante S., "The presence of the high number of such microspherules in the sediments can serve as a local stratigraphic marker in identification of the [lower Younger Dryas boundary] there where dark variety of the black mat is absent.", WikidataQ106891675
↑Holliday, Vance T.; Daulton, Tyrone L.; Bartlein, Patrick J.; Boslough, Mark B.; Breslawski, Ryan P.; Fisher, Abigail E.; Jorgeson, Ian A.; Scott, Andrew C. et al. (2023-07-26). "Comprehensive refutation of the Younger Dryas Impact Hypothesis (YDIH)" (in en). Earth-Science Reviews247: 104502. doi:10.1016/j.earscirev.2023.104502. ISSN0012-8252.
↑ 28.028.1"Arguments and Evidence Against a Younger Dryas Impact Event". Climates, Landscapes, and Civilizations. Geophysical Monograph Series. 2013. pp. 13–26. doi:10.1029/2012GM001209. ISBN9781118704325.
↑Teller, James; Boyd, Matthew; LeCompte, Malcolm; Kennett, James P.; West, Allen; Telka, Alice; Diaz, Aura; Adedeji, Victor et al., "We propose that this massive hydrological reorganization resulted from a cosmic impact event at the YD boundary.", WikidataQ106863462
↑Andronikov, Alexandre V.; Andronikova, Irina E.; Loehn, Clayton W.; Lafuente, Barbara; Ballenger, Jesse A. M.; Crawford, George T.; Lauretta, Dante S. (2016). "Implications from chemical, structural and mineralogical studies of magnetic microspherules from around the lower younger dryas boundary (New Mexico, USA)" (in en). Geografiska Annaler: Series A, Physical Geography98 (1): 39–59. doi:10.1111/geoa.12122.
↑"Cosmic-impact event in lake sediments from central Europe postdates the Laacher See Eruption and marks onset of the Younger Dryas". The Journal of Geology126 (6): 561–575. October 2018. doi:10.1086/699869. Bibcode: 2018JG....126..561K.
↑"A multi-proxy study of changing environmental conditions in a Younger Dryas sequence in southwestern Manitoba, Canada, and evidence for an extraterrestrial event". Quaternary Research93: 60–87. October 2019. doi:10.1017/qua.2019.46.
↑Kennett, James P; Kennett, Douglas J; Culleton, Brendan J; Tortosa, J Emili Aura; Bischoff, James L; Bunch, Ted E; Daniel, I Randolph; Erlandson, Jon M et al., WikidataQ35718070
↑ 60.060.1Fiedel, Stuart (2009). "Sudden Deaths: The Chronology of Terminal Pleistocene Megafaunal Extinction". American Megafaunal Extinctions at the End of the Pleistocene. Vertebrate Paleobiology and Paleoanthropology. pp. 21–37. doi:10.1007/978-1-4020-8793-6_2. ISBN978-1-4020-8792-9.
↑"Extinctions, scenarios, and assumptions: Changes in latest Pleistocene large herbivore abundance and distribution in western North America". Quaternary International217 (1–2): 225–239. 2010. doi:10.1016/j.quaint.2009.11.003. Bibcode: 2010QuInt.217..225S.
↑Anderson, David G.; Goodyear, Albert; Kennett, James P.; West, Allen (2011). "Multiple lines of evidence for possible Human population decline/settlement reorganization during the early Younger Dryas". Quaternary International242 (2): 570–583. doi:10.1016/j.quaint.2011.04.020. Bibcode: 2011QuInt.242..570A.
↑Kenny, Gavin G.; Hyde, William R.; Storey, Michael; Garde, Adam A.; Whitehouse, Martin J.; Beck, Pierre; Johansson, Leif; Søndergaard, Anne Sofie et al., WikidataQ111179348
↑Murton, Julian B.; Bateman, Mark D.; Dallimore, Scott R.; Teller, James T.; Yang, Zhirong (2010). "Identification of Younger Dryas outburst flood path from Lake Agassiz to the Arctic Ocean" (in en). Nature464 (7289): 740–743. doi:10.1038/nature08954. ISSN0028-0836. PMID20360738. Bibcode: 2010Natur.464..740M.
↑Eisenman, I.; Bitz, C.M.; Tziperman, E. (2009). "Rain driven by receding ice sheets as a cause of past climate change". Paleoceanography24 (4): PA4209. doi:10.1029/2009PA001778. Bibcode: 2009PalOc..24.4209E.
↑Reinig, Frederick; Wacker, Lukas; Jöris, Olaf; Oppenheimer, Clive; Guidobaldi, Giulia; Nievergelt, Daniel et al., "[Measurements] firmly date the [Laacher See eruption] to 13,006 ± 9 calibrated years before present (BP; taken as AD 1950), which is more than a century earlier than previously accepted. ...thereby dating the onset of the Younger Dryas to 12,807 ± 12 calibrated years BP, which is around 130 years earlier than thought.", WikidataQ107389873
↑"Eruption of the Laacher See volcano redated". University of Mainz (Press release). 2021-07-01. Archived from the original on 2021-07-01. Retrieved 2021-08-26. That is 126 years earlier than the generally accepted dating based on sediments in the Meerfelder Maar from the Eifel region in Germany. ... This difference has far-reaching consequences for the synchronization of European climate archives and the understanding of North Atlantic and European climate history. ... This means that the [onset of the Younger Dryas] also occurred in Central Europe 130 years earlier, around 12,870 years ago respectively. This is in line with the onset of the cooling in the North Atlantic region identified in ice cores from Greenland. ... 'This strong cooling did not take place time transgressively, as previously thought, but rather synchronously over the entire North Atlantic and Central European region,' said Frederick Reinig.
↑Frey, David G. (1953). "Regional Aspects of the Late-Glacial and Post-Glacial Pollen Succession of Southeastern North Carolina". Ecological Monographs23 (3): 289–313. doi:10.2307/1943595.
↑Frey, David G. (1955). "A Time Revision of the Pleistocene Pollen Chronology of Southeastern North Carolina". Ecology36 (4): 762–763. doi:10.2307/1931316.
↑Whitehead, Donald R. (1964). "Fossil Pine Pollen and Full-Glacial Vegetation in Southeastern North Carolina". Ecology45 (4): 767–777. doi:10.2307/1934924.
↑Whitehead, Donald R. (1981). "Late-Pleistocene Vegetational Changes in Northeastern North Carolina". Ecological Monographs51 (4): 451–471. doi:10.2307/2937324.
↑Brooks, Mark J.; Taylor, Barbara E.; Grant, John A. (1996). "Carolina Bay geoarchaeology and Holocene landscape evolution on the Upper Coastal Plain of South Carolina". Geoarchaeology11 (6): 481–504. doi:10.1002/(SICI)1520-6548(199610)11:6<481::AID-GEA2>3.0.CO;2-4.
↑Brooks, M. J. (2001). "Pleistocene encroachment of the Wateree River sand sheet into Big Bay on the Middle Coastal Plain of South Carolina". Southeastern Geology40: 241–257.
↑Grant, John A.; Brooks, Mark J.; Taylor, Barbara E. (1998). "New constraints on the evolution of Carolina Bays from ground-penetrating radar". Geomorphology22 (3–4): 325–345. doi:10.1016/S0169-555X(97)00074-3. Bibcode: 1998Geomo..22..325G.
↑Swezey, C. S. (2020). "Quaternary Eolian Dunes and Sand Sheets in Inland Locations of the Atlantic Coastal Plain Province, USA". Inland Dunes of North America. Dunes of the World. Springer Publishing. pp. 11–63. doi:10.1007/978-3-030-40498-7_2. ISBN978-3-030-40498-7.
↑"Extraordinary biomass-burning episode and impact winter triggered by the Younger Dryas cosmic impact ~12,800 years ago. Part 1. Ice Cores and Glaciers". Journal of Geology126 (2): 165–184. March 2018. doi:10.1086/695703. Bibcode: 2018JG....126..165W.
↑ 128.0128.1128.2Moore, Andrew M. T.; Kennett, James P.; Napier, William M.; Bunch, Ted E.; Weaver, James C.; LeCompte, Malcolm; Adedeji, A. Victor; Hackley, Paul et al. (Mar 6, 2020), "The wide range of evidence supports the hypothesis that a cosmic event occurred at Abu Hureyra ~12,800 years ago, coeval with impacts that deposited high-temperature meltglass, melted microspherules, and/or platinum at other YDB sites on four continents.", WikidataQ90119243
↑Fernandez S (2020-03-06). "Fire from the Sky" (Press release). University of California, Santa Barbara. Archived from the original on 2021-07-06. Retrieved 2021-08-07. Based on materials collected before the site was flooded, Kennett and his colleagues contend Abu Hureyra is the first site to document the direct effects of a fragmented comet on a human settlement.
↑Hai Cheng (Sep 8, 2020). "Timing and structure of the Younger Dryas event and its underlying climate dynamics". PNAS117 (38): 23408–23417. doi:10.1073/pnas.2007869117.
↑Bellinger K, Szulgit G, Wright JL, Proctor S (March 22, 2021). "Gladiator Graveyard". Ancient Unexplained Files. Season 1. Episode 6. Science Channel. Event occurs at 12:40. Archived from the original on 2021-12-21. Wikidata Q109762970.
An extensive series of articles was published in Mammoth Trumpet, the magazine for Texas A&M University's Center for the Study of the First Americans, featuring conversations with many YDIH proponents and opponents:
Largent, Floyd, The Clovis Comet - Part I: Evidence for a Cosmic Collision 12,900 Years Ago, WikidataQ107225241
Largent, Floyd, The Clovis Comet - Part II: What the Data Tell Us, WikidataQ107226201
Largent, Floyd, The Clovis Comet - Part III: The Implications, WikidataQ107226305
Largent, Floyd, The Clovis Comet - Part IV: The Scientific Community Responds, WikidataQ107226371
Lepper, Bradley, Fire Record Undercuts Clovis Comet Theory, WikidataQ107228406
Largent, Floyd, The Clovis Comet Revisited - In the Crucible of Scientific Inquiry, WikidataQ107228547
Largent, Floyd, The Clovis Comet Revisited - The Nanodiamond Controversy, Part I, WikidataQ107228612
Largent, Floyd, The Clovis Comet Revisited - The Nanodiamond Controversy, Part II: A Case of Mistaken Identity?, WikidataQ107228963
Largent, Floyd, The Clovis Comet - The Cratering Evidence, WikidataQ107229168
Largent, Floyd, The Clovis Comet - New Developments in the Proxy Evidence, Part I, WikidataQ107229501
Largent, Floyd, The Clovis Comet - New Developments in the Proxy Evidence, Part II, WikidataQ107230043
Largent, Floyd, The Clovis Comet - New Developments in the Proxy Evidence, Part III, WikidataQ107230085
External links
0.00
(0 votes)
Original source: https://en.wikipedia.org/wiki/Younger Dryas impact hypothesis. Read more