- 姓名: 侯明强
- 性别: 男
- 职称: 研究员
- 职务:
- 学历:
- 电话:
- 传真:
- 电子邮件: houmq@apm.ac.cn
- 所属部门: 地震与地球内部物理研究部
- 通讯地址: 湖北省武汉市武昌区徐东大街340号
- 学习经历2002.9-2006.7:学士,国防科技大学2006.9-2009.7:硕士,中国空间技术研究院2009.9-2014.3:博士,中国空间技术研究院工作经历2014.3-2015.7:Geophysical laboratory, Carnegie Institution of Washington,博士后2015.7-2017.11: 北京高压科学研究中心上海实验室,博士后2017.11-2019.7: Advanced Light Source, Lawrence-Berkeley National Laboratory,博士后2019.7-2021.6: Institute of Meteoritics, Department of Earth and Planetary Sciences, University of New Mexico,博士后2021.7-2022.6: 精密测量科学与技术创新研究院,副研究员2022.7-今: 精密测量科学与技术创新研究院,研究员
简 历:
社会任职:
- (1)高温高压矿物物理学
(2)高温高压地球化学(3)地球动力学
研究方向:
- 优秀青年基金(海外)地核候选成分Fe-C合金高温高压物理性质研究,200万“武汉英才”领军人才支持计划,50万
承担科研项目情况:
- 1. Hou, M., Zhou, W., Hao, M., Hua, F.T., Kung, J., Zhang, D., Dera, P.K., Zhang, J., 2022. Effect of structural water on the elasticity of orthopyroxene. American Mineralogist, 107(4), 703-708.2. Zhuang, Y., Gan, B., Cui, Z., Tang, R., Tao, R., Hou, M., ... & Hu, Q. (2022). Mid-mantle water transportation implied by the electrical and seismic properties of ε-FeOOH. Science Bulletin, 67(7), 748-754.3. Zhou, W. Y., Olson, P. L., Shearer, C. K., Agee, C. B., Townsend, J. P., Hao, M., Hou, M., Zhang, J. S. (2022). High pressure-temperature phase equilibrium studies on Martian basalts: Implications for the failure of plate tectonics on Mars. Earth and Planetary Science Letters, 594, 117751.4. Huang, Y., Hou, M., Gan, B., Li, X., He, D., Jiang, G., ... & Liu, Y. (2022). Iron‐Carbon Alloy Under Shock Compression: Implications for the Carbon Concentration in Earth’s Inner Core. Journal of Geophysical Research: Solid Earth, 127(4), e2021JB023645.5. Zhang, Y., Luo, K., Hou, M., Driscoll, P., Salke, N. P., Minár, J., ... & Lin, J. F. (2022). Thermal conductivity of Fe-Si alloys and thermal stratification in Earth’s core. Proceedings of the National Academy of Sciences, 119(1), e2119001119. (Co-first author)6. Hou, M., Zhang, Y., Du, X., Dong, H., Yan, L., Wang, J., Wang, L., Chen, B., Zhang, L., Liu, J., 2021. Melting of iron up to core pressures determined by in-situ electrical resistance jump. Geophysical Research Letters, 48, e2021GL095739.7. Hou, M., He, Y., Zhuang, Y., Jang, B., Sun, S., Zhuang, Y., Deng, L., Tang, R., Chen, J., Ke, F., Meng, Y., Prakapenka, V., Chen, B., Shim, J., Liu, J., Kim, D., Hu, Q., Pickard, C., Needs, R., and Mao, H.K., 2021. Superionic iron oxide-hydroxide in Earth’s deep mantle. Nature Geoscience, 14, 174-178.Highlight at same issue: Komabayashi, T., 2021. Hydrogen dances in the deep mantle. Nature Geoscience, 14, 116-1178. Zhang, Y., Hou, M., Driscoll, P., Salke, N., Liu, J., Greenberg, E., Prakapenka, V.B., Lin, J.F., 2020. Transport properties of Fe-Ni-Si alloys at Earth’s core conditions: Insight into the viability of thermal and compositional convection. Earth and Planetary Science Letters, 553, 116614. (Co-first author)9. Zhang, Y., Hou, M., Liu, G., Zhang, C., Prakapenka, V.B., Fei, Y., Cohen, R.E., Lin, J.F., 2020. Reconciliation of experiments and theory on transport properties of iron and the geodynamo. Physical Review Letters, 125, 078501. (Co-first author)10. Hou, M., Zhang, Q., Tao, R., Liu, H., Kono, Y., Mao, H.K., Yang, W., Chen, B., Fei, Y., 2019. Temperature-induced amorphization in CaCO3 at high pressure: implication for recycled CaCO3 in subduction zones. Nature Communications, 10.1: 1963.
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