Literature DB >> 33589634

Breakup of a long-period comet as the origin of the dinosaur extinction.

Amir Siraj1, Abraham Loeb2.   

Abstract

The origin of the Chicxulub impactor, which is attributed as the cause of the K/T mass extinction event, is an unsolved puzzle. The background impact rates of main-belt asteroids and long-period comets have been previously dismissed as being too low to explain the Chicxulub impact event. Here, we show that a fraction of long-period comets are tidally disrupted after passing close to the Sun, each producing a collection of smaller fragments that cross the orbit of Earth. This population could increase the impact rate of long-period comets capable of producing Chicxulub impact events by an order of magnitude. This new rate would be consistent with the age of the Chicxulub impact crater, thereby providing a satisfactory explanation for the origin of the impactor. Our hypothesis explains the composition of the largest confirmed impact crater in Earth's history as well as the largest one within the last million years. It predicts a larger proportion of impactors with carbonaceous chondritic compositions than would be expected from meteorite falls of main-belt asteroids.

Entities:  

Year:  2021        PMID: 33589634      PMCID: PMC7884440          DOI: 10.1038/s41598-021-82320-2

Source DB:  PubMed          Journal:  Sci Rep        ISSN: 2045-2322            Impact factor:   4.996


  7 in total

1.  Comet 81P/Wild 2 under a microscope.

Authors:  Don Brownlee; Peter Tsou; Jérôme Aléon; Conel M O'd Alexander; Tohru Araki; Sasa Bajt; Giuseppe A Baratta; Ron Bastien; Phil Bland; Pierre Bleuet; Janet Borg; John P Bradley; Adrian Brearley; F Brenker; Sean Brennan; John C Bridges; Nigel D Browning; John R Brucato; E Bullock; Mark J Burchell; Henner Busemann; Anna Butterworth; Marc Chaussidon; Allan Cheuvront; Miaofang Chi; Mark J Cintala; B C Clark; Simon J Clemett; George Cody; Luigi Colangeli; George Cooper; Patrick Cordier; C Daghlian; Zurong Dai; Louis D'Hendecourt; Zahia Djouadi; Gerardo Dominguez; Tom Duxbury; Jason P Dworkin; Denton S Ebel; Thanasis E Economou; Sirine Fakra; Sam A J Fairey; Stewart Fallon; Gianluca Ferrini; T Ferroir; Holger Fleckenstein; Christine Floss; George Flynn; Ian A Franchi; Marc Fries; Z Gainsforth; J-P Gallien; Matt Genge; Mary K Gilles; Philipe Gillet; Jamie Gilmour; Daniel P Glavin; Matthieu Gounelle; Monica M Grady; Giles A Graham; P G Grant; Simon F Green; Faustine Grossemy; Lawrence Grossman; Jeffrey N Grossman; Yunbin Guan; Kenji Hagiya; Ralph Harvey; Philipp Heck; Gregory F Herzog; Peter Hoppe; Friedrich Hörz; Joachim Huth; Ian D Hutcheon; Konstantin Ignatyev; Hope Ishii; Motoo Ito; Damien Jacob; Chris Jacobsen; Stein Jacobsen; Steven Jones; David Joswiak; Amy Jurewicz; Anton T Kearsley; Lindsay P Keller; H Khodja; A L David Kilcoyne; Jochen Kissel; Alexander Krot; Falko Langenhorst; Antonio Lanzirotti; Loan Le; Laurie A Leshin; J Leitner; L Lemelle; Hugues Leroux; Ming-Chang Liu; K Luening; Ian Lyon; Glen Macpherson; Matthew A Marcus; Kuljeet Marhas; Bernard Marty; Graciela Matrajt; Kevin McKeegan; Anders Meibom; Vito Mennella; Keiko Messenger; Scott Messenger; Takashi Mikouchi; Smail Mostefaoui; Tomoki Nakamura; T Nakano; M Newville; Larry R Nittler; Ichiro Ohnishi; Kazumasa Ohsumi; Kyoko Okudaira; Dimitri A Papanastassiou; Russ Palma; Maria E Palumbo; Robert O Pepin; David Perkins; Murielle Perronnet; P Pianetta; William Rao; Frans J M Rietmeijer; François Robert; D Rost; Alessandra Rotundi; Robert Ryan; Scott A Sandford; Craig S Schwandt; Thomas H See; Dennis Schlutter; J Sheffield-Parker; Alexandre Simionovici; Steven Simon; I Sitnitsky; Christopher J Snead; Maegan K Spencer; Frank J Stadermann; Andrew Steele; Thomas Stephan; Rhonda Stroud; Jean Susini; S R Sutton; Y Suzuki; Mitra Taheri; Susan Taylor; Nick Teslich; Kazu Tomeoka; Naotaka Tomioka; Alice Toppani; Josep M Trigo-Rodríguez; David Troadec; Akira Tsuchiyama; Anthony J Tuzzolino; Tolek Tyliszczak; K Uesugi; Michael Velbel; Joe Vellenga; E Vicenzi; L Vincze; Jack Warren; Iris Weber; Mike Weisberg; Andrew J Westphal; Sue Wirick; Diane Wooden; Brigitte Wopenka; Penelope Wozniakiewicz; Ian Wright; Hikaru Yabuta; Hajime Yano; Edward D Young; Richard N Zare; Thomas Zega; Karen Ziegler; Laurent Zimmerman; Ernst Zinner; Michael Zolensky
Journal:  Science       Date:  2006-12-15       Impact factor: 47.728

2.  Chondrulelike objects in short-period comet 81P/Wild 2.

Authors:  Tomoki Nakamura; Takaaki Noguchi; Akira Tsuchiyama; Takayuki Ushikubo; Noriko T Kita; John W Valley; Michael E Zolensky; Yuki Kakazu; Kanako Sakamoto; Etsuko Mashio; Kentaro Uesugi; Tsukasa Nakano
Journal:  Science       Date:  2008-09-19       Impact factor: 47.728

3.  An asteroid breakup 160 Myr ago as the probable source of the K/T impactor.

Authors:  William F Bottke; David Vokrouhlický; David Nesvorný
Journal:  Nature       Date:  2007-09-06       Impact factor: 49.962

4.  Extraterrestrial cause for the cretaceous-tertiary extinction.

Authors:  L W Alvarez; W Alvarez; F Asaro; H V Michel
Journal:  Science       Date:  1980-06-06       Impact factor: 47.728

Review 5.  The Chicxulub asteroid impact and mass extinction at the Cretaceous-Paleogene boundary.

Authors:  Peter Schulte; Laia Alegret; Ignacio Arenillas; José A Arz; Penny J Barton; Paul R Bown; Timothy J Bralower; Gail L Christeson; Philippe Claeys; Charles S Cockell; Gareth S Collins; Alexander Deutsch; Tamara J Goldin; Kazuhisa Goto; José M Grajales-Nishimura; Richard A F Grieve; Sean P S Gulick; Kirk R Johnson; Wolfgang Kiessling; Christian Koeberl; David A Kring; Kenneth G MacLeod; Takafumi Matsui; Jay Melosh; Alessandro Montanari; Joanna V Morgan; Clive R Neal; Douglas J Nichols; Richard D Norris; Elisabetta Pierazzo; Greg Ravizza; Mario Rebolledo-Vieyra; Wolf Uwe Reimold; Eric Robin; Tobias Salge; Robert P Speijer; Arthur R Sweet; Jaime Urrutia-Fucugauchi; Vivi Vajda; Michael T Whalen; Pi S Willumsen
Journal:  Science       Date:  2010-03-05       Impact factor: 47.728

6.  Establishing a molecular relationship between chondritic and cometary organic solids.

Authors:  George D Cody; Emily Heying; Conel M O Alexander; Larry R Nittler; A L David Kilcoyne; Scott A Sandford; Rhonda M Stroud
Journal:  Proc Natl Acad Sci U S A       Date:  2011-04-04       Impact factor: 11.205

7.  Zhamanshin astrobleme provides evidence for carbonaceous chondrite and post-impact exchange between ejecta and Earth's atmosphere.

Authors:  Tomáš Magna; Karel Žák; Andreas Pack; Frédéric Moynier; Bérengère Mougel; Stefan Peters; Roman Skála; Šárka Jonášová; Jiří Mizera; Zdeněk Řanda
Journal:  Nat Commun       Date:  2017-08-09       Impact factor: 14.919

  7 in total
  3 in total

1.  Reply to: The breakup of a long-period comet is not a likely match to the Chicxulub impactor.

Authors:  Amir Siraj; Abraham Loeb
Journal:  Sci Rep       Date:  2022-06-21       Impact factor: 4.996

2.  The breakup of a long-period comet is not a likely match to the Chicxulub impactor.

Authors:  Steven J Desch; Alan P Jackson; Jessica L Noviello; Ariel D Anbar
Journal:  Sci Rep       Date:  2022-06-21       Impact factor: 4.996

3.  Reply to: Arguments for a comet as cause of the Hopewell airburst are unsubstantiated.

Authors:  Kenneth Barnett Tankersley; Stephen D Meyers; Stephanie A Meyers; David L Lentz
Journal:  Sci Rep       Date:  2022-07-15       Impact factor: 4.996

  3 in total

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