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C. McCammon
69. D.N. Pipkorn, C.K. Edge, P. Debrunner, G.D. Pasquali, H.G. Drickamer, H. Frauenfelder,
Phys. Rev. 135, 1604 (1964)
70. H. King, D. Virgo, H. Mao, Carnegie Institute of Washington Yearbook 77, 830 (1978)
71. H.K. Mao, D. Virgo, P.M. Bell, Carnegie Institute of Washington Yearbook 76, 522 (1977)
72. K. Glazyrin, C. McCammon, L. Dubrovinsky, M. Merlini, K. Schollenbruch, A. Woodland,
M. Hanfland, Am. Miner. 97, 128 (2012)
73. E. Greenberg, L.S. Dubrovinsky, C. McCammon, J. Rouquette, I. Kantor, V. Prakapenka,
G.K. Rozenberg, M.P. Pasternak, Am. Miner. 96, 833 (2011)
74. E. Greenberg, W. M. Xu, M. Nikolaevsky, E. Bykova, G. Garbarino, K. Glazyrin, D. G.
Merkel, L. Dubrovinsky, M. P. Pasternak, G. K. Rozenberg, Phys. Rev. B 95 (2017). https://
doi.org/10.1103/PhysRevB.95.195150
75. G. Hearne, V. Pischedda, J. Solid State Chem. 187, 134 (2012)
76. I.Y. Kantor, L.S. Dubrovinsky, A.P. Kantor, V.S. Urusov, C. McCammon, W. Crichton, Dokl.
Phys. 50, 343 (2005)
77. T. Kawakami, S. Nasu, T. Tsutsui, T. Sasaki, T. Yamada, S. Endo, M. Takano, T. Katamoto,
J. Phys. Soc. Jpn. 72, 2640 (2003)
78. M.P. Pasternak, S. Nasu, K. Wada, S. Endo, Physical Review B 50, 6446 (1994)
79. G. K. Rozenberg, Y. Amiel, W. M. Xu, M. P. Pasternak, R. Jeanloz, M. Hanfland, R. D. Taylor,
Phys. Rev. B 75 (2007). https://doi.org/10.1103/PhysRevB.75.020102
80. S. Winell, H. Annersten, V. Prakapenka, Am. Miner. 91, 560 (2006)
81. X. Wu, G. Steinle-Neumann, O. Narygina, I. Kantor, C. McCammon, S. Pascarelli, G.
Aquilanti, V. Prakapenka, L. Dubrovinsky, Phys. Rev. B 79 (2009). https://doi.org/10.1103/
PhysRevB.79.094106
82. X. Wu, G. Steinle-Neumann, O. Narygina, C. McCammon, L. Dubrovinsky, High Pressure
Research 30, 395 (2010)
83. L. Zhang, S.S. Hafner, Am. Miner. 77, 462 (1992)
84. F.E. Huggins, H.-K. Mao, D. Virgo, Carnegie Institute of Washington Yearbook 75, 756 (1976)
85. I. Kantor, L. Dubrovinsky, C. McCammon, A. Kantor, S. Pascarelli, G. Aquilanti, W. Crichton,
M. Mattesini, R. Ahuja, J. Almeida, V. Urusov, Phys. Chem. Miner. 33, 35 (2006)
86. I. Y. Kantor, L. S. Dubrovinsky, C. A. McCammon, Phys. Rev. B 73 (2006). https://doi.org/
10.1103/PhysRevB.73.100101
87. J. Rouquette, I. Kantor, C.A. McCammon, V. Dmitriev, L.S. Dubrovinsky, Inorg. Chem. 47,
2668 (2008)
88. R. Sinmyo, C. McCammon, L. Dubrovinsky, Am. Miner. 102, 1263 (2017)
89. S. Takele, G.R. Hearne, Journal of Physics-Condensed Matter 13, 10077 (2001)
90. W. M. Xu, G. R. Hearne, S. Layek, D. Levy, J. P. Itie, M. P. Pasternak, G. K. Rozenberg, E.
Greenberg, Phys. Rev. B 96 (2017). https://doi.org/10.1103/PhysRevB.96.045108
91. W. M. Xu, G. R. Hearne, S. Layek, D. Levy, J. P. Itie, M. P. Pasternak, G. K. Rozenberg, E.
Greenberg, Phys. Rev. B 95 (2017). https://doi.org/10.1103/PhysRevB.95.045110
92. W. M. Xu, G. R. Hearne, S. Layek, D. Levy, M. P. Pasternak, G. K. Rozenberg, E. Greenberg,
Phys. Rev. B 97 (2018). https://doi.org/10.1103/PhysRevB.97.085120
93. L.S. Dubrovinsky, N.A. Dubrovinskaia, C. McCammon, G.K. Rozenberg, R. Ahuja, J.M.
Osorio-Guillen, V. Dmitriev, H.P. Weber, T. Le Bihan, B. Johansson, Journal of PhysicsCondensed Matter 15, 7697 (2003)
94. E. Greenberg, I. Leonov, S. Layek, Z. Konopkova, M. P. Pasternak, L. Dubrovinsky, R. Jeanloz,
I. A. Abrikosov, G. K. Rozenberg, Phys. Rev. X 8 (2018). https://doi.org/10.1103/PhysRevX.
8.031059
95. E. Greenberg, G. K. Rozenberg, W. M. Xu, M. P. Pasternak, C. McCammon, K. Glazyrin, L.
S. Dubrovinsky, Phys. Rev. B 88 (2013). https://doi.org/10.1103/PhysRevB.88.214109
96. M.P. Pasternak, G.K. Rozenberg, G.Y. Machavariani, O. Naaman, R.D. Taylor, R. Jeanloz,
Phys. Rev. Lett. 82, 4663 (1999)
97. M.P. Pasternak, W.M. Xu, G.K. Rozenberg, R.D. Taylor, R. Jeanloz, J. Magn. Magn. Mater.
265, L107 (2003)
C. McCammon
69. D.N. Pipkorn, C.K. Edge, P. Debrunner, G.D. Pasquali, H.G. Drickamer, H. Frauenfelder,
Phys. Rev. 135, 1604 (1964)
70. H. King, D. Virgo, H. Mao, Carnegie Institute of Washington Yearbook 77, 830 (1978)
71. H.K. Mao, D. Virgo, P.M. Bell, Carnegie Institute of Washington Yearbook 76, 522 (1977)
72. K. Glazyrin, C. McCammon, L. Dubrovinsky, M. Merlini, K. Schollenbruch, A. Woodland,
M. Hanfland, Am. Miner. 97, 128 (2012)
73. E. Greenberg, L.S. Dubrovinsky, C. McCammon, J. Rouquette, I. Kantor, V. Prakapenka,
G.K. Rozenberg, M.P. Pasternak, Am. Miner. 96, 833 (2011)
74. E. Greenberg, W. M. Xu, M. Nikolaevsky, E. Bykova, G. Garbarino, K. Glazyrin, D. G.
Merkel, L. Dubrovinsky, M. P. Pasternak, G. K. Rozenberg, Phys. Rev. B 95 (2017). https://
doi.org/10.1103/PhysRevB.95.195150
75. G. Hearne, V. Pischedda, J. Solid State Chem. 187, 134 (2012)
76. I.Y. Kantor, L.S. Dubrovinsky, A.P. Kantor, V.S. Urusov, C. McCammon, W. Crichton, Dokl.
Phys. 50, 343 (2005)
77. T. Kawakami, S. Nasu, T. Tsutsui, T. Sasaki, T. Yamada, S. Endo, M. Takano, T. Katamoto,
J. Phys. Soc. Jpn. 72, 2640 (2003)
78. M.P. Pasternak, S. Nasu, K. Wada, S. Endo, Physical Review B 50, 6446 (1994)
79. G. K. Rozenberg, Y. Amiel, W. M. Xu, M. P. Pasternak, R. Jeanloz, M. Hanfland, R. D. Taylor,
Phys. Rev. B 75 (2007). https://doi.org/10.1103/PhysRevB.75.020102
80. S. Winell, H. Annersten, V. Prakapenka, Am. Miner. 91, 560 (2006)
81. X. Wu, G. Steinle-Neumann, O. Narygina, I. Kantor, C. McCammon, S. Pascarelli, G.
Aquilanti, V. Prakapenka, L. Dubrovinsky, Phys. Rev. B 79 (2009). https://doi.org/10.1103/
PhysRevB.79.094106
82. X. Wu, G. Steinle-Neumann, O. Narygina, C. McCammon, L. Dubrovinsky, High Pressure
Research 30, 395 (2010)
83. L. Zhang, S.S. Hafner, Am. Miner. 77, 462 (1992)
84. F.E. Huggins, H.-K. Mao, D. Virgo, Carnegie Institute of Washington Yearbook 75, 756 (1976)
85. I. Kantor, L. Dubrovinsky, C. McCammon, A. Kantor, S. Pascarelli, G. Aquilanti, W. Crichton,
M. Mattesini, R. Ahuja, J. Almeida, V. Urusov, Phys. Chem. Miner. 33, 35 (2006)
86. I. Y. Kantor, L. S. Dubrovinsky, C. A. McCammon, Phys. Rev. B 73 (2006). https://doi.org/
10.1103/PhysRevB.73.100101
87. J. Rouquette, I. Kantor, C.A. McCammon, V. Dmitriev, L.S. Dubrovinsky, Inorg. Chem. 47,
2668 (2008)
88. R. Sinmyo, C. McCammon, L. Dubrovinsky, Am. Miner. 102, 1263 (2017)
89. S. Takele, G.R. Hearne, Journal of Physics-Condensed Matter 13, 10077 (2001)
90. W. M. Xu, G. R. Hearne, S. Layek, D. Levy, J. P. Itie, M. P. Pasternak, G. K. Rozenberg, E.
Greenberg, Phys. Rev. B 96 (2017). https://doi.org/10.1103/PhysRevB.96.045108
91. W. M. Xu, G. R. Hearne, S. Layek, D. Levy, J. P. Itie, M. P. Pasternak, G. K. Rozenberg, E.
Greenberg, Phys. Rev. B 95 (2017). https://doi.org/10.1103/PhysRevB.95.045110
92. W. M. Xu, G. R. Hearne, S. Layek, D. Levy, M. P. Pasternak, G. K. Rozenberg, E. Greenberg,
Phys. Rev. B 97 (2018). https://doi.org/10.1103/PhysRevB.97.085120
93. L.S. Dubrovinsky, N.A. Dubrovinskaia, C. McCammon, G.K. Rozenberg, R. Ahuja, J.M.
Osorio-Guillen, V. Dmitriev, H.P. Weber, T. Le Bihan, B. Johansson, Journal of PhysicsCondensed Matter 15, 7697 (2003)
94. E. Greenberg, I. Leonov, S. Layek, Z. Konopkova, M. P. Pasternak, L. Dubrovinsky, R. Jeanloz,
I. A. Abrikosov, G. K. Rozenberg, Phys. Rev. X 8 (2018). https://doi.org/10.1103/PhysRevX.
8.031059
95. E. Greenberg, G. K. Rozenberg, W. M. Xu, M. P. Pasternak, C. McCammon, K. Glazyrin, L.
S. Dubrovinsky, Phys. Rev. B 88 (2013). https://doi.org/10.1103/PhysRevB.88.214109
96. M.P. Pasternak, G.K. Rozenberg, G.Y. Machavariani, O. Naaman, R.D. Taylor, R. Jeanloz,
Phys. Rev. Lett. 82, 4663 (1999)
97. M.P. Pasternak, W.M. Xu, G.K. Rozenberg, R.D. Taylor, R. Jeanloz, J. Magn. Magn. Mater.
265, L107 (2003)
