Shapiro Nikolai M, Ritzwoller Michael H, Molnar Peter, Levin Vadim
Center for Imaging the Earth's Interior, Department of Physics, University of Colorado at Boulder, Boulder, CO 80309, USA.
Science. 2004 Jul 9;305(5681):233-6. doi: 10.1126/science.1098276.
Intermediate-period Rayleigh and Love waves propagating across Tibet indicate marked radial anisotropy within the middle-to-lower crust, consistent with a thinning of the middle crust by about 30%. The anisotropy is largest in the western part of the plateau, where moment tensors of earthquakes indicate active crustal thinning. The preferred orientation of mica crystals resulting from the crustal thinning can account for the observed anisotropy. The middle-to-lower crust of Tibet appears to have thinned more than the upper crust, consistent with deformation of a mechanically weak layer that flows as if confined to a channel.
穿过西藏传播的中期瑞利波和洛夫波表明中下地壳存在明显的径向各向异性,这与中地壳变薄约30%相一致。这种各向异性在高原西部最为显著,那里地震的矩张量表明地壳正在进行活跃的变薄。地壳变薄导致云母晶体的优选取向可以解释观测到的各向异性。西藏的中下地壳似乎比上地壳变薄得更多,这与一个机械软弱层的变形相一致,该软弱层的流动就好像被限制在一个通道内。