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Twisted Schwinger effect

日程 : 2020年7月17日(金) 4:00 pm 〜 場所 : Zoom開催(事前登録を下記リンク先にてお願い致します) 講師 : 岡 隆史 氏 所属 : 東京大学物性研究所、マックスプランク複雑系物理学研究所 世話人 : 岡 隆史 、尾崎 泰助
e-mail: oka@issp.u-tokyo.ac.jp , t-ozaki@issp.u-tokyo.ac.jp

We study the nonperturbative pair production of particles induced by strong rotating electric fields [1]. The excitations by tunneling become strongly chirality dependent due to nonadiabatic geometric effects. The threshold, i.e., Schwinger limit, even vanishes for particles with an optically allowed chirality. We explain these phenomena through the twisted Landau-Zener model proposed by M. V. Berry, and provide a quantitative understanding in terms of the geometric amplitude factor. As a condensed matter application, we make a nonperturbative analysis on the optically induced valley polarization in 2D Dirac materials. Furthermore, in 3D Dirac and Weyl materials with spin-orbit coupling, we predict the generation of a nonlinear spin or charge current in the direction of the laser propagation.

[1] Takayoshi, Wu, Oka, arXiv:2005.01755

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(公開日: 2020年07月10日)