[1] Xu Y S. Laboratory-Based Electrical Conductivity in the Earth's Mantle [J]. J Geophys Res, 2000, 105(B12): 27865-27875.
[2] Duba A. The Electrical Conductivity of Iherzolite [J]. J Geophys Res, 1993, 98(B5): 11885-11899.
[3] Morin F J, Oliver J R, Housley. Electrical Properties of Forsterite, Mg2SiO4 [J]. Phys Rev, 1977, 16(10): 4434-4445.
[4] Will G, Cemic E, Hinze K, et al. Electrical Conductivity Measurements on Olivine and Pyroxenes under Defined Thermodynamic Activities as a Function of Temperature and Pressure [J]. Phys Chem Minerals, 1979, 4: 189-197.
[5] Cemic L, Will G, Hinze E. Electrical Conductivity Measurements on Olivine Mg2SiO4-Fe2SiO4 under Defined Thermodynamic Conditions [J]. Phys Chem Minerals, 1980, 6: 95-107.
[6] Omura K, Kurita K, Kumazawa M. Experimental Study of Pressure Dependence of Electrical Conductivity of Olivine at High Temperatures [J]. Phys Earth Planet Inter, 1989, 57: 291-303.
[7] Zhu M X, Xie H S, Guo J, et al. Impedance Spectroscopy Analysis on Electrical Properties of Serpentine at High Temperature and Pressure [J]. Science in China(Series D), 2000, 30(6): 634-641. (in Chinese)
[8] 朱茂旭, 谢鸿森, 郭捷, 等. 高温高压下蛇纹石电学性质的阻抗谱分析 [J]. 中国科学(D辑), 2000, 30(6): 634-641.
[9] Zhu M X, Xie H S, Zhao Z D, et al. Experimental Studies on Electrical Conductivity of the Dabble Ultrahigh Pressure Ecologists at High Temperature and Pressures [J]. Chinese J Geophys, 2001, 44(1): 93-101. (in Chinese)
[10] 朱茂旭, 谢鸿森, 赵志丹, 等. 大别山超高压榴辉岩高温高压下电导率实验研究 [J]. 地球物理学报, 2001, 44(1): 93-101.
[11] Wang D J, Li H P, Liu C Q, et al. Experimental Study on Electrical Conductivity of Dunite at High Temperature and Pressure-The Evidence of Electrical Conductivity of Cold Mantle in the Gaize-Lugu Area [J]. Chinese Science Bulletin, 2001, 46(24): 2089-2092.
[12] Wang D J, Liu C Q, Li H P, et al. Impedance Spectra of Hot, Dry Gabbro at High Temperature and Pressure [J]. Progress in Natural Science, 2002, 12(5): 397-400.
[13] Wang D J, Li H P, Liu C Q, et al. The Electrical Conductivity of Pyroxenite at High Temperature and Pressure [J]. Chinese Journal of High Pressure Physics, 2004, 18(2): 177-182. (in Chinese)
[14] 王多君, 李和平, 刘丛强, 等. 高温高压下辉石岩的电导率研究 [J]. 高压物理学报, 2004, 18(2): 177-182.
[15] Roberts J J, Tyburczy J A. Impedance Spectroscopy of Single and Polycrystalline Olivine: Evidence for Grain Boundary Transport [J]. Phys Chem Minerals, 1993, 20: 19-26.
[16] Cemic L. Impedance Spectroscopy and Defect Chemistry of Fayalite [J]. Phys Chem Minerals, 1996, 23: 186-192.
[17] Xie H S, Zhou W G, Liu Y G, et al. Some Experimental Methods for Determining Physical Properties of Materials in the Earth's Interior [J]. Earth Science Frontiers, 2003, 10(2): 357-365. (in Chinese)
[18] 谢鸿森, 周文戈, 刘永刚, 等. 地球深部物质的某些物性测量方法研究 [J]. 地学前缘, 2003, 10(2): 357-365.
[19] Xu J, Zhang Y, Hou W, et al. Measurements of Ultrasonic Wave Velocities at High Temperature and High Pressure for Window Glass, Pyrophillite and Kimberlite up to 1400 ℃ and 55 GPa [J]. High Temperature-High Pressure, 1994, 26: 375-384.
[20] Hirsch L M, Shankland T J, Duba A G. Electrical Conduction and Polaron Mobility in Fe-Bearing Olivine [J]. Geophys J Int, 1993, 114: 36-44.
[21] Xu Y S, Poe B T, Shankland T J, et al. Electrical Conductivity of Olivine, Wadsleyite, and Ringwoodite under Upper-Mantle Conditions [J]. Science, 1998, 280: 1415-1418.
[22] Xu Y S, Shankhand T J, Duba A. Pressure Effect on Electrical Conductivity of Mantle Olivine [J]. Phys Earth Planet Inter, 2000, 118: 149-161.