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Search for the origin of exotic helium in deep-sea sediments

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Abstract

Merrihue1 first observed helium with a very high 3He/4He isotope ratio ( ≥10−4; here termed exotic helium) in a magnetic separate of a deep-ocean sediment and attributed it to input of extraterrestrial material. Krylov et al.2 subsequently reported the existence of exotic He in several deep-sea sediments, while Tilles3 measured argon isotope ratios in magnetic separates of two ocean sediments. Observing that the 3He/4He ratio is inversely correlated with the sedimentation rate, Ozima et al.4 concluded that the exotic He is carried by interplanetary dust particles (IDPs). We have now examined other deep-sea sediments to characterize the exotic He and to identify its carrier, and have confirmed that the exotic He resides mainly in a strongly magnetic fraction. Stepwise degassing experiments suggest that the exotic He consists of a single component. The carrier of the He is likely to be chondritic IDPs. The higher level of exotic He in magnetic fractions of sediments can be explained by secondarily produced magnetite in IDPs as a result of thermal shock during atmospheric entry.

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References

  1. Merrihue, C. Ann. N.Y. Acad. Sci. 119, 351–367 (1964).

    Article  ADS  CAS  Google Scholar 

  2. Krylov, A. Ya., Mamyrin, B. A., Silin, Yu. I. & Khabarin, L. V. Geochem. Int. 10, 202–205 (1973).

    Google Scholar 

  3. Tilles, D. Science 153, 981–984 (1966).

    Article  ADS  CAS  Google Scholar 

  4. Ozima, M., Takayanagi, M., Zashu, S. & Amari, S. Nature 311, 448–450 (1984).

    Article  ADS  CAS  Google Scholar 

  5. Kobayashi, K., Tonouchi, S., Furuta, T. & Watanabe, M. Bull. Ocean Res. Inst. 13, 116–121 (1980).

    Google Scholar 

  6. Mizuno, A. et al. in Cruise Rep. 15 (ed. Mizuno, A.) 1–31 (Geological Survey of Japan, Tsukuba, 1981).

    Google Scholar 

  7. Mizuno, A. et al. in Cruise Rep. 18 (eds Mizuno, A. & Nakao, S.) 1–35 (Geological Survey of Japan, Tsukuba, 1982).

    Google Scholar 

  8. Ozima, M. & Podosek, F. A. Noble Gas Geochemistry, 68–126 (Cambridge University Press, 1983).

    Google Scholar 

  9. Løvlie, R. Earth planet. Sci. Lett. 21, 315–320 (1974).

    Article  ADS  Google Scholar 

  10. Rajan, R. S. et al. Nature 267, 133–134 (1977).

    Article  ADS  CAS  Google Scholar 

  11. Fraundorf, P. & Shirk, J. Proc. 10th lunar planet. Sci. Conf. 951–976 (1979).

  12. Fraundorf, P. Geochim. cosmochim. Acta. 45, 915–943 (1981).

    Article  ADS  CAS  Google Scholar 

  13. Brownlee, D. E., Olszewski, E. & Wheelock, M. Lunar planet Sci. 13, 71–72 (1982).

    ADS  Google Scholar 

  14. Hyman, M., Rowe, M. W. & Herndon, J. M. Geochem. J. 13, 37–39 (1979).

    Article  ADS  CAS  Google Scholar 

  15. Fraundorf, P., Brownlee, D. E. & Walker, R. M. in Comets (ed. Wilkening, L. L.) 383–409 (University of Arizona Press, 1982).

    Google Scholar 

  16. Brownlee, D. E. Rev. Geophys. Space Phys. 17, 1735–1743 (1979).

    Article  ADS  Google Scholar 

  17. Fraundorf, P. Geophys. Res. Lett. 10, 765–768 (1980).

    Article  ADS  Google Scholar 

  18. Brownlee, D. E., Tomandl, D. A. & Olszewski, E. Proc. 8th lunar Sci. Conf. 149–160 (1977).

  19. Brownlee, D. E. Ann. Rev. Earth planet. Sci. 13, 147–173 (1985).

    Article  ADS  Google Scholar 

  20. Brownlee, D. E. in Protostars and Planets (ed. Gehreis, T.) 134–150 (University of Arizona Press, 1978).

    Google Scholar 

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Amari, S., Ozima, M. Search for the origin of exotic helium in deep-sea sediments. Nature 317, 520–522 (1985). https://doi.org/10.1038/317520a0

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