5 Mössbauer Spectroscopy with High Spatial Resolution …
259
98. M.P. Pasternak, W.M. Xu, G.K. Rozenberg, R.D. Taylor, R. Jeanloz, J. Phys. Chem. Solids
65, 1531 (2004)
99. G.K. Rozenberg, M.P. Pasternak, G.R. Hearne, C.A. McCammon, Phys. Chem. Miner. 24,
569 (1997)
100. S. Takele, G.R. Hearne, Physical Review B 60, 4401 (1999)
101. W. M. Xu, G. Y. Machavariani, G. K. Rozenberg, M. P. Pasternak, Phys. Rev. B 70 (2004).
https://doi.org/10.1103/PhysRevB.70.174106
102. T. Seda, G.R. Hearne, Journal of Physics-Condensed Matter 16, 2707 (2004)
103. I. Choe, R. Ingalls, J.M. Brown, Y. Satosorensen, Phys. Chem. Miner. 19, 236 (1992)
104. F. E. Huggins, Dissertation, Massachusetts Institute of Technology (1975)
105. I. Kantor, L. Dubrovinsky, C. McCammon, G. Steinle-Neumann, A. Kantor, N. Skorodumova,
S. Pascarelli, G. Aquilanti, Phys. Rev. B 80 (2009). https://doi.org/10.1103/PhysRevB.80.
014204
106. F.E. Huggins, H.-K. Mao, D. Virgo, Carnegie Institute of Washington Yearbook 74, 405 (1975)
107. O.V. Narygina, I.Y. Kantor, C.A. McCammon, L.S. Dubrovinsky, Phys. Chem. Miner. 37, 407
(2010)
108. L. Zhang, S.S. Hafner, Am. Miner. 77, 474 (1992)
109. S. Speziale, V. E. Lee, S. M. Clark, J. F. Lin, M. P. Pasternak, R. Jeanloz, J. Geophys. Res.
Solid Earth 112 (2007). https://doi.org/10.1029/2006jb004730
110. S. Speziale, A. Milner, V.E. Lee, S.M. Clark, M.P. Pasternak, R. Jeanloz, Proc. Natl. Acad.
Sci. U.S.A. 102, 17918 (2005)
111. X. Wu, G. Steinle-Neumann, O. Narygina, I. Kantor, C. McCammon, V. Prakapenka, V.
Swamy, L. Dubrovinsky, Phys. Rev. Lett. 103 (2009). https://doi.org/10.1103/PhysRevLett.
103.065503
112. T.T. Gu, X.A. Wu, S. Qin, L. Dubrovinsky, Phys. Earth Planet. Inter. 184, 154 (2011)
113. J. Rouquette, D. Dolejs, I. Y. Kantor, C. A. McCammon, D. J. Frost, V. B. Prakapenka, L. S.
Dubrovinsky, Appl. Phys. Lett. 92 (2008). https://doi.org/10.1063/1.2892400
114. U. Chandra, K.K. Pandey, G. Parthasarathy, S.M. Sharma, Geosci. Front. 7, 265 (2016)
115. U. Chandra, G. Parthasarathy, N.V.C. Shekar, P.C. Sahu, Chemie Der Erde-Geochemistry 73,
197 (2013)
116. U. Chandra, P. Sharma, G. Parthasarathy, B. Sreedhar, Am. Miner. 95, 870 (2010)
117. L. Zhang, J. Stanek, S.S. Hafner, H. Ahsbahs, H.F. Grünsteudel, J. Metge, R. Rüffer, Am.
Miner. 84, 447 (1999)
118. H. F. Grünsteudel, H. J. Heese, A. I. Chumakov, H. Grünsteudel, O. Leupold, J. Metge, R.
Rüffer, G. Wortmann, in Proceedings of the International Conference on the Applications of
the Mossbauer Effect—ICAME-95, ed. by I. Ortalli (SIF, Bologna, 1996), p. 853 (1996)
119. J. F. Lin, J. S. Tse, E. E. Alp, J. Y. Zhao, M. Lerche, W. Sturhahn, Y. M. Xiao, P. Chow, Phys.
Rev. B 84 (2011). https://doi.org/10.1103/PhysRevB.84.064424
120. D.Z. Zhang, J.M. Jackson, B. Chen, W. Sturhahn, J.Y. Zhao, J.Y. Yan, R. Caracas, Journal of
Geophysical Research-Solid Earth 118, 4071 (2013)
121. D.Z. Zhang, J.M. Jackson, W. Sturhahn, Y.M. Xiao, Am. Miner. 96, 1585 (2011)
122. S.M. Dorfman, S.E. Dutton, V. Potapkin, A.I. Chumakov, J.P. Rueff, P. Chow, Y.M. Xiao, R.J.
Cava, T.S. Duffy, C.A. McCammon, P. Gillet, Am. Miner. 101, 1659 (2016)
123. B. Grocholski, S. H. Shim, W. Sturhahn, J. Zhao, Y. Xiao, P. C. Chow, Geophys. Res. Lett.
36 (2009). https://doi.org/10.1029/2009gl041262
124. M. Hamada, S. Kamada, E. Ohtani, T. Mitsui, R. Masuda, T. Sakamaki, N. Suzuki, F. Maeda,
M. Akasaka, Phys. Rev. B 93 (2016). https://doi.org/10.1103/PhysRevB.93.155165
125. L. Ismailova, M. Bykov, E. Bykova, A. Bobrov, I. Kupenko, V. Cerantola, D. Vasiukov, N.
Dubrovinskaia, C. McCammon, M. Hanfland, K. Glazyrin, H.P. Liermann, A. Chumakov, L.
Dubrovinsky, Am. Miner. 102, 184 (2017)
126. J.M. Jackson, W. Sturhahn, G.Y. Shen, J.Y. Zhao, M.Y. Hu, D. Errandonea, J.D. Bass, Y.W.
Fei, Am. Miner. 90, 199 (2005)
127. J. Li, W. Sturhahn, J.M. Jackson, V.V. Struzhkin, J.F. Lin, J. Zhao, H.K. Mao, G. Shen, Phys.
Chem. Miner. 33, 575 (2006)
Précédent

- 272/533

Suivant