[1] Saraf A K, Rawat V, Banerjee P, et al. Satellite detection of earthquake thermal infrared precursors in Iran[J]. Natural Hazards, 2008, 47(1): 119-135. [2] Saraf A K, Rawat V, Choudhury S, et al. Advances in understanding of the mechanism for generation of earthquake thermal precursors detected by satellites[J]. International Journal of Applied Earth Observation and Geoinformation, 2009, 11(6): 373-379. [3] Derr J S. Earthquake lights: A review of observations and present theories[J]. Bulletin of the Seismological Society of America, 1973, 63(6-1): 2177-2187. [4] Lockner D A, Johnston M J S, Byerlee J D. A mechanism to explain the generation of earthquake lights[J]. Nature, 1983, 302(5903): 28-33. [5] Guo G, Wang B. Cloud anomaly before Iran earthquake[J]. International Journal of Remote Sensing, 2008, 29(7): 1921-1928. [6] Uyeda S, Kamogawa M, Tanaka H. Analysis of electrical activity and seismicity in the natural time domain for the volcanic-seismic swarm activity in 2000 in the Izu Island region, Japan[J]. J Geophys Res Solid Earth, 2009, 114(B2): 1978-2012. [7] Ogawa T, Utada H. Electromagnetic signals related to incidence of a teleseismic body wave into a subsurface piezoelectric body, Earth[J]. Planets and Space, 2000, 52(4): 253-260. [8] Huang Q. One possible generation mechanism of co-seismic electric signals[J]. Proceedings of the Japan Academy. Ser. B: Physical and Biological Sciences, 2002, 78(7): 173-178. [9] Barnes R A, Leonard R S. Observations of ionospheric disturbances following the Alaska earthquake[J]. J Geophys Res, 1965, 70(9): 1250-1253. [10] Pulinets S A, Boyarchuk K A. Ionospheric precursors of earthquakes[J]. Springer Berlin Heideberg, 2005, 4(5/6): 697-702. [11] 申旭辉, 吴云, 单新建. 地震遥感应用趋势与中国地震卫星发展框架[J]. 国际地震动态, 2007, (8): 38-45. [12] Shen X, Zhang X, Wang L, et al. The earthquake-related disturbances in ionosphere and project of the first China seismo-electromagnetic satellite[J]. Earthquake Science, 2011, 24(6): 639-650. [13] 张学民, 申旭辉, 欧阳新艳, 等. 汶川8级地震前空间电离层VLF电场异常现象[J]. 电波科学学报, 2009, 24(6): 1024-1032. [14] 泽仁志玛, 申旭辉, 曹晋滨, 等. 强震前ELF/VLF磁场的扰动特征统计研究[C]. 中国地震学会空间对地观测专业委员会2012年学术研讨会论文摘要集, 2012: 3699-3708. [15] 刘静, 万卫星, 黄建平, 等. 智利8.8级地震的震前电子浓度扰动[J]. 地球物理学报, 2011, 54(11): 2717-2725. [16] 闫相相, 单新建, 曹晋滨, 等. 利用DEMETER卫星数据统计分析全球MW≥7.0地震的电离层电子浓度异常[J]. 地球物理学报, 2014, 57(2): 364-376. [17] 张红波, 欧明, 甄卫民, 等. 天地基综合观测的东日本大地震电离层异常分析[J]. 电波科学学报, 2011, (3): 486-493. [18] Zhao B, Wang M, Yu T, et al. Is an unusual large enhancement of ionospheric electron density linked with the 2008 great Wenchuan earthquake?[J]. J Geophys Res, 2008, 113: A11304. [19] 余涛, 毛田, 王云冈, 等. 汶川特大地震前电离层主要参量变化[J]. 科学通报, 2009, (4): 493-499. [20] 张学民, 刘静, 赵必强, 等. 玉树地震前的电离层异常现象分析[J]. 空间科学学报, 2014, 34(6): 822-829. [21] Gousheva M, Danov D, Hristov P, et al. Quasi-static electric fields phenomena in the ionosphere associated with pre- and post earthquake effects[J]. Nat Hazards Earth Syst Sci, 2008, 8: 101-107. [22] Gousheva M, Danov D, Hristov P, et al. Ionospheric quasi-static electric field anomalies during seismic activity in August-September 1981[J]. Natural Hazards & Earth System Science, 2009, 9(1): 3-15. [23] Zhang X, Zeren Z, Parrot M, et al. ULF/ELF ionospheric electric field and plasma perturbations related to chile earthquakes[J]. Advances in Space Research, 2011, 47(6): 991-1000. [24] Zhang X, Shen X, Zhao S, et al. The characteristics of quasistatic electric field perturbations observed by DEMETER satellite before large earthquakes[J]. J Asian Earth Sci, 2014, 79(2): 42-52. [25] Kuo C L, Huba J D, Joyce G, et al. Ionosphere plasma bubbles and density variations induced by pre-earthquake rock currents and associated surface charges[J]. J Geophys Res, 2011, 116: A10317. [26] Kuo C L, Lee L C, Huba J D. An improved coupling model for the lithosphere-atmosphere-ionosphere system[J]. J Geophys Res Space Phys, 2014, 119(4): 3189-3205. [27] Huba J D, Joyce G, Febber J A. Sami2 is Another Model of the Ionosphere (SAMI2): A new low-latitude ionosphere model[J]. J Geophys Res Space Physics, 2000, 105(A10): 23035-23053. [28] Scherliess L, Fejer B G. Radar and satellite global equatorial F region vertical drift model[J]. J Geophys Res Space Physics, 1999, 104(A4): 6829-6842. |