MR028-08
Lattice preferred orientation of talc and implications for seismic anisotropy in subduction zones

Thursday, 17 December 2020: 04:28
Virtual
Jungjin Lee1, Haemyeong Jung1, Reiner Klemd2, Matthew S Tarling3 and Dmitry Konopelko4,5, (1)Seoul National University, Tectonophysics Laboratory, Seoul, Korea, Republic of (South), (2)GeoZentrum Nordbayern, Erlangen, Germany, (3)University of Otago, Department of Geology, Dunedin, New Zealand, (4)St. Petersburg State University, Department of Regional Geology, St. Petersburg, Russia, (5)Novosibirsk State University, Novosibirsk, Russia
Abstract:
Strong seismic anisotropy is generally observed in subduction zones. Lattice preferred orientation (LPO) of olivine and elastically anisotropic hydrous minerals has been considered to be an important factor causing anomalous seismic anisotropy. For the first time, we report on measured LPOs of polycrystalline talc. The study comprises subduction-related ultrahigh-pressure metamorphic schists from the Makbal Complex in Kyrgyzstan-Kazakhstan and amphibolite-facies metasomatic schists from the Valla Field Block in Unst, Scotland. The here studied talc revealed a strong alignment of (001) planes (sub)parallel to the foliation and a girdle distribution of [100] axes and (010) poles (sub)parallel to the foliation. The LPOs of polycrystalline talc produced a significant P-wave anisotropy (AVp =72%) and a high maximum S-wave anisotropy (max AVs =24%). The results imply that the LPO of talc influence both the strong trench-parallel azimuthal anisotropy and positive/negative radial anisotropy of P-waves, and the trench-parallel seismic anisotropy of S-waves in subduction zones (Lee et al., 2020).

Lee, J., Jung, H., Klemd, R., Tarling, M. S., & Konopelko, D. (2020). Lattice preferred orientation of talc and implications for seismic anisotropy in subduction zones. Earth and Planetary Science Letters, 537, 116178.