Open Access
Issue
A&A
Volume 699, July 2025
Article Number A84
Number of page(s) 20
Section Planets, planetary systems, and small bodies
DOI https://doi.org/10.1051/0004-6361/202554497
Published online 10 July 2025
  1. Ahrens, T. J., & Rubin, A. M. 1993, J. Geophys. Res.-Planets, 98, 1185 [Google Scholar]
  2. Bagheri, A., Khan, A., Efroimsky, M., Kruglyakov, M., & Giardini, D. 2021, Nat. Astron., 5, 539 [NASA ADS] [CrossRef] [Google Scholar]
  3. Barbosa, P. F., & Lagoeiro, L. 2010, Am. Mineralogist, 95, 118 [Google Scholar]
  4. Bassett, W. A., & Ming, L.-C. 1972, Phys. Earth Planet. Inter., 6, 154 [Google Scholar]
  5. Bell, M. S. 2007, Meteorit. Planet. Sci., 42, 935 [Google Scholar]
  6. Bibring, J., Ksanfomality, L., Langevin, I., et al. 1992, Adv. Space Res., 12, 13 [NASA ADS] [CrossRef] [Google Scholar]
  7. Black, B. A., & Brounce, M. 2023, Geology, 51, 978 [Google Scholar]
  8. Boland, J., & Duba, A. 1981, Nature, 294, 142 [Google Scholar]
  9. Boynton, W. V., Taylor, G. J., Evans, L. G., et al. 2007, J. Geophys. Res.-Planets, 112, E12S99 [Google Scholar]
  10. Brearley, A. J. 2003, Meteorit. Planet. Sci., 38, 849 [Google Scholar]
  11. Bridges, J., & Warren, P. 2006, J. Geol. Soc., 163, 229 [Google Scholar]
  12. Bridges, J. C., Catling, D., Saxton, J., et al. 2001, in Chronology and Evolution of Mars: Proceedings of an ISSI Workshop, 10–14 April 2000 (Bern, Switzerland: Springer), 365 [Google Scholar]
  13. Cahn, J. W., & Hilliard, J. E. 1958, J. Chem. phys., 28, 258 [Google Scholar]
  14. Canup, R., & Salmon, J. 2018, Sci. Adv., 4, eaar6887 [NASA ADS] [CrossRef] [Google Scholar]
  15. Cao, Z., Guo, Z., Li, C., et al. 2024, Sci. Adv., 10, eadn2301 [Google Scholar]
  16. Chanyshev, A., Bondar, D., Fei, H. Z., et al. 2021, Contrib. Mineral. Petrol., 176 [Google Scholar]
  17. Chen, G. Q., Ahrens, T. J., & Stolper, E. M. 2002, Phys. Earth Planet. Inter., 134, 35 [Google Scholar]
  18. Chen, M., Goresy, A. E., & Gillet, P. 2004, Proc. Natl. Acad. Sci., 101, 15033 [Google Scholar]
  19. Chen, Z. A., Yuan, X. H., Huang, X. G., et al. 2016, Chinese J. Geophys.-Chinese Ed., 59, 152 [Google Scholar]
  20. Chidester, B., Millot, M., Townsend, J., et al. 2021, Geophys. Res. Lett., 48, e2021GL092471 [Google Scholar]
  21. Del Bianco, L., Ballesteros, C., Rojo, J., & Hernando, A. 1998, Phys. Rev. Lett., 81, 4500 [Google Scholar]
  22. Dewaele, A., Svitlyk, V., Bottin, F., Bouchet, J., & Jacobs, J. 2018, Appl. Phys. Lett., 112, 201906 [Google Scholar]
  23. Farrell-Turner, S., Reimold, W., Nieuwoudt, M., & Erasmus, R. 2005, Meteorit. Planet. Sci., 40, 1311 [Google Scholar]
  24. Fel’dman, V. I., Sazonova, L. V., & Kozlov, E. A. 2006, Petrology, 14, 540 [Google Scholar]
  25. Foster, N., Wozniakiewicz, P. J., Price, M. C., Kearsley, A. T., & Burchell, M. J. 2013, Geochim. Cosmochim. Acta, 121, 1 [Google Scholar]
  26. Gan, B., Zhang, Y. J., Huang, Y. Q., et al. 2021, Geophys. Res. Lett., 48, e94446 [Google Scholar]
  27. Greer, A. 2016, J. Chem. phys., 145, 211704 [Google Scholar]
  28. Grieve, R. A., Langenhorst, F., & Stöffler, D. 1996, Meteorit. Planet. Sci., 31, 6 [Google Scholar]
  29. Gunnlaugsson, H. P., Helgason, Ö., Kristjánsson, L., et al. 2006, Phys. Earth Planet. Inter., 154, 276 [Google Scholar]
  30. Guo, Z., Li, C., Li, Y., et al. 2022, Nat. Commun., 13, 7177 [Google Scholar]
  31. Haggerty, S. E., & Baker, I. 1967, Contrib. Mineral. Petrol., 16, 233 [Google Scholar]
  32. Hamilton, V. E., & Christensen, P. R. 2005, Geology, 33, 433 [Google Scholar]
  33. Harriss, K. H., & Burchell, M. J. 2016, Meteorit. Planet. Sci., 51, 1289 [Google Scholar]
  34. Henrichs, L. F., Kontny, A., Reznik, B., et al. 2020, Meteorit. Planet. Sci., 55, 56 [Google Scholar]
  35. Hoefen, T. M., Clark, R. N., Bandfield, J. L., et al. 2003, Science, 302, 627 [Google Scholar]
  36. Hou, Z., Liu, J., Xu, Y., et al. 2024, Natl. Sci. Rev., 11, nwae313 [Google Scholar]
  37. Hoye, G., & Evans, M. 1975, Geophys. J. Int., 41, 139 [Google Scholar]
  38. Huang, X., Yuan, X., Chen, Z., Liu, F., & Bai, W. 2016, Sci. China Earth Sci., 59, 619 [Google Scholar]
  39. Hurowitz, J. A., Grotzinger, J. P., Fischer, W. W., et al. 2017, Science, 356, eaah6849 [Google Scholar]
  40. Inoue, T., Irifune, T., Higo, Y., et al. 2006, Phys. Chem. Miner., 33, 106 [Google Scholar]
  41. Irifune, T., Nishiyama, N., Kuroda, K., et al. 1998, Science, 279, 1698 [Google Scholar]
  42. Isambert, A., De Resseguier, T., Gloter, A., et al. 2006, Earth Planet. Sci. Lett., 243, 820 [Google Scholar]
  43. Jolivet, J.-P., & Tronc, E. 1988, J. Colloid Interface Sci., 125, 688 [Google Scholar]
  44. Katsura, T., Yamada, H., Nishikawa, O., et al. 2004, J. Geophys. Res.-Solid Earth, 109, B02209 [Google Scholar]
  45. King Jr, H., Herbolzheimer, E., & Cook, R. L. 1992, J. Appl. Phys., 71, 2071 [Google Scholar]
  46. Kminek, G., Meyer, M. A., Beaty, D. W., et al. 2022, Astrobiology, 22, S1 [Google Scholar]
  47. Koeppen, W. C., & Hamilton, V. E. 2008, J. Geophy. Res.-Planets, 113, E05001 [Google Scholar]
  48. Kring, D. A., Claeys, P., Gulick, S. P., Morgan, J. V., & Collins, G. S. 2017, GSA Today, 27, 4 [Google Scholar]
  49. Kudoh, Y., & Takeda, H. 1986, Physica B+C, 139, 333 [Google Scholar]
  50. Kuebler, K. E., Jolliff, B. L., Wang, A., & Haskin, L. A. 2006, Geochim. Cosmochim. Acta, 70, 6201 [CrossRef] [Google Scholar]
  51. Kuramoto, K., Kawakatsu, Y., Fujimoto, M., et al. 2022, Earth Planets Space, 74, 12 [NASA ADS] [CrossRef] [Google Scholar]
  52. Lammer, H., Zerkle, A. L., Gebauer, S., et al. 2018, Astron. Astrophys. Rev., 26, 1 [Google Scholar]
  53. Langenhorst, F. 2002, Bull. Czech Geolog. Surv., 77, 265 [Google Scholar]
  54. Langenhorst, F., & Deutsch, A. 2012, Elements, 8, 31 [Google Scholar]
  55. Li, J., Wu, Q., Li, J., et al. 2020, Geophys. Res. Lett., 47, e2020GL087758 [Google Scholar]
  56. Ma, C., Tschauner, O., Beckett, J. R., et al. 2016, Geochim. Cosmochim. Acta, 184, 240 [Google Scholar]
  57. McCoy, T. J., Ketcham, R. A., Wilson, L., et al. 2006, Earth Planet. Sci. Lett., 246, 102 [Google Scholar]
  58. McSween Jr, H. Y., Labotka, T. C., & Viviano-Beck, C. E. 2015, Meteorit. Planet. Sci., 50, 590 [Google Scholar]
  59. Miyahara, M., Ohtani, E., Ozawa, S., et al. 2011, Proc. Natl. Acad. Sci. U.S.A., 108, 5999 [Google Scholar]
  60. Miyahara, M., Ohtani, E., El Goresy, A., Ozawa, S., & Gillet, P. 2016, Phys. Earth Planet. Inter., 259, 18 [Google Scholar]
  61. Miyahara, M., Ohtani, E., Nishijima, M., & El Goresy, A. 2019, Phys. Earth Planet. Inter., 291, 1 [Google Scholar]
  62. Miyamoto, M., McKay, D. S., McKay, G. A., & Duke, M. B. 1986, J. Geophys. Res.-Solid Earth, 91, 12804 [Google Scholar]
  63. Murchie, S., & Erard, S. 1996, Icarus, 123, 63 [CrossRef] [Google Scholar]
  64. Mustard, J., Poulet, F., Gendrin, A., et al. 2005, Science, 307, 1594 [Google Scholar]
  65. Nestola, F., Balic-Zunic, T., Koch-Muller, M., et al. 2011, Mineral. Mag., 75, 2649 [Google Scholar]
  66. Obata, M., Mashimo, T., Ando, J., et al. 2023, Phys. Earth Planet. Inter., 338, 107009 [Google Scholar]
  67. Ohnishi, I., Tomeoka, K., & Ishizaki, N. 2007, J. Mineral. Petrol. Sci., 102, 346 [Google Scholar]
  68. Ohtani, E., Litasov, K., Hosoya, T., Kubo, T., & Kondo, T. 2004, Phys. Earth Planet. Inter., 143, 255 [Google Scholar]
  69. Okuchi, T., Seto, Y., Tomioka, N., et al. 2021, Nat. Commun., 12, 4305 [Google Scholar]
  70. Pang, K. D., Rhoads, J. W., Lane, A. L., & Ajello, J. M. 1980, Nature, 283, 277 [Google Scholar]
  71. Pieters, C. M., & Noble, S. K. 2016, J. Geophy. Res.-Planets, 121, 1865 [Google Scholar]
  72. Poggiali, G., Matsuoka, M., Barucci, M., et al. 2022, Mon. Not. Roy. Astron. Soc., 516, 465 [Google Scholar]
  73. Qi, C., Zhao, Y.-H., Zimmerman, M. E., Kim, D., & Kohlstedt, D. L. 2021, J. Geophys. Res.-Solid Earth, 126, e2020JB019629 [Google Scholar]
  74. Rampe, E., Ming, D., Blake, D., et al. 2017, Earth Planet. Sci. Lett., 471, 172 [Google Scholar]
  75. Reisener, R., Goldstein, J., & Petaev, M. 2006, Meteorit. Planet. Sci., 41, 1839 [Google Scholar]
  76. Rivkin, A., Brown, R., Trilling, D., Bell Iii, J., & Plassmann, J. 2002, Icarus, 156, 64 [NASA ADS] [CrossRef] [Google Scholar]
  77. Root, S., Townsend, J. P., Davies, E., et al. 2018, Geophys. Res. Lett., 45, 3865 [Google Scholar]
  78. Salisbury, J. W., & Walter, L. S. 1989, J. Geophys. Res.-Solid Earth, 94, 9192 [Google Scholar]
  79. Sanchez, J. A., Reddy, V., Kelley, M. S., et al. 2014, Icarus, 228, 288 [CrossRef] [Google Scholar]
  80. Sazonova, L. V., Fel’dman, V. I., Kozlov, E. A., Dubrovinskaya, N. A., & Dubrovinskii, L. S. 2006, Geochem. Int., 44, 137 [Google Scholar]
  81. Sekine, T., Kobayashi, T., Nishio, M., & Takahashi, E. 2008, Earth Planets Space, 60, 999 [Google Scholar]
  82. Sharp, T. G., & DeCarli, P. S. 2006, Meteor. Early Solar Syst. II, 943, 653 [Google Scholar]
  83. Sheldon, B. W., & Rankin, J. 2002, J. Am. Ceram. Soc., 85, 683 [Google Scholar]
  84. Shklyaev, A., Latyshev, A. V., & Ichikawa, M. 2010, Semiconductors, 44, 432 [Google Scholar]
  85. Simonds, C. H., Floran, R. J., McGee, P. E., Phinney, W. C., & Warner, J. L. 1978, J. Geophys. Res.-Solid Earth, 83, 2773 [Google Scholar]
  86. Smyth, J. R., Kawamoto, T., Jacobsen, S. D., et al. 1997, Am. Miner., 82, 270 [Google Scholar]
  87. Steel, D. 1998, Planet Space Sci., 46, 473 [Google Scholar]
  88. Stöffler, D., Hamann, C., & Metzler, K. 2018, Meteorit. Planet. Sci., 53, 5 [Google Scholar]
  89. Stojic, A. N., Morlok, A., Tollan, P., et al. 2021, Icarus, 357, 114162 [Google Scholar]
  90. Syono, Y., Goto, T., Sato, J., & Takei, H. 1981, J. Geophys. Res.-Solid Earth, 86, 6181 [Google Scholar]
  91. Takenouchi, A., Mikouchi, T., & Kogure, T. 2017, Meteorit. Planet. Sci., 52, 2491 [Google Scholar]
  92. Thomas-Keprta, K. L., Clemett, S. J., Mckay, D. S., Gibson, E. K., & Wentworth, S. J. 2009, Geochim. Cosmochim. Acta, 73, 6631 [Google Scholar]
  93. Tielke, J. A., Peslier, A. H., Christoffersen, R., et al. 2022, J. Geophys. Res. Planets, 127, e2021JE007042 [Google Scholar]
  94. Tiwari, K., Ghosh, S., Miyahara, M., & Ray, D. 2021, Geophys. Res. Lett., 48, e2021GL093592 [Google Scholar]
  95. Tiwari, K., Ghosh, S., Miyahara, M., & Ray, D. 2022, J. Geophys. Res.-Planets, 127, e2022JE007420 [Google Scholar]
  96. Tomeoka, K., Ohnishi, I., & Nakamura, N. 2001, Meteorit. Planet. Sci., 36, 1535 [Google Scholar]
  97. Tomioka, N., & Okuchi, T. 2017, Sci. Rep., 7, 17351 [Google Scholar]
  98. Treiman, A. H., Dyar, M. D., McCanta, M., Noble, S. K., & Pieters, C. M. 2007, J. Geophy. Res.-Planets, 112, E04002 [Google Scholar]
  99. Tripoliti, E. K., Dobson, D. P., Fortes, A. D., et al. 2023, Mineral. Mag., 87, 789 [Google Scholar]
  100. Van De Moortele, B., Reynard, B., McMillan, P. F., et al. 2007a, Earth Planet. Sci. Lett., 261, 469 [CrossRef] [Google Scholar]
  101. Van de Moortèle, B., Reynard, B., Rochette, P., et al. 2007b, Earth Planet. Sci. Lett., 262, 37 [CrossRef] [Google Scholar]
  102. Walton, E. L. 2013, Geochim. Cosmochim. Acta, 107, 299 [Google Scholar]
  103. Wang, Z., Lin, H., Ye, B., et al. 2024, A&A, 690, A138 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  104. Warren, P. H. 1994, Icarus, 111, 338 [NASA ADS] [CrossRef] [Google Scholar]
  105. Wu, Y., Wang, Y. B., Zhang, Y. F., et al. 2012, Chin. Sci. Bull., 57, 894 [Google Scholar]
  106. Xie, Z., & Sharp, T. G. 2004, Meteorit. Planet. Sci., 39, 2043 [Google Scholar]
  107. Xu, J., Mo, B., Wu, Y., et al. 2023, A&A, 672, A115 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  108. Yagi, T., Akaogi, M., Shimomura, O., Suzuki, T., & Akimoto, S.-I. 1987, J. Geophys. Res.-Solid Earth, 92, 6207 [Google Scholar]
  109. Yang, Y., Li, S., Milliken, R. E., et al. 2019, J. Geophy. Res.-Planets, 124, 31 [Google Scholar]
  110. Yavas, O., Leiderer, P., Park, H. K., et al. 1993, Phys. Rev. Lett., 70, 1830 [Google Scholar]
  111. Zhang, L., Zhao, B., Xue, L., et al. 2013, J. Synchrot. Radiat., 20, 413 [Google Scholar]
  112. Zhao, Y., Zimmerman, M. E., & Kohlstedt, D. L. 2009, Earth Planet. Sci. Lett., 287, 229 [CrossRef] [Google Scholar]

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