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Conductivity structure and rheological property of lithosphere in Southern Tibet inferred from super-broadband magnetotelluric sounding
Authors:WEI WenBo      JIN Sheng  YE GaoFeng  DENG Ming  JING JianEn  Martyn UNSWORTH & Alan GJONES Key Laboratory of Geo-detection of Ministry of Education  Beijing  China  State Key Laboratory of Geological Processes  Mineral Resources  School of Geophysics  Information Technology  China University of Geosciences
Institution:WEI WenBo1,2,3,JIN Sheng1,YE GaoFeng1,DENG Ming1,JING JianEn1,Martyn UNSWORTH4 & Alan G.JONES5 1 Key Laboratory of Geo-detection of Ministry of Education,Beijing 100083,China,2 State Key Laboratory of Geological Processes , Mineral Resources,3 School of Geophysics , Information Technology,China University of Geosciences,4 Department of Physics,University of Alberta,Edmonton,Alberta T6G,2J1,Canada,5 School of Cosmic Physics,Dublin Institute of Advanced St...
Abstract:To understand deep lithosphere structure beneath the Qinghai-Tibet Plateau more comprehensively and objectively and to explore important scientific issues,such as characteristics of plateau lithospheric deformation,state of strain,thermal structure,plate (or terrane) movement,and crust-mantle rheology,it is necessary to research the variation of crust-mantle electrical structure in the east-west direction in every geological unit.For this purpose,six super-broadband magnetotelluric (MT) sounding profiles ha...
Keywords:Southern Tibet  super-broadband magnetotelluric sounding  crust  electrical conductivity  rheological property  
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