碲
反演(地质)
非线性系统
电导率
材料科学
凝聚态物理
计算物理学
物理
量子力学
地质学
构造盆地
古生物学
冶金
作者
Manuel Suárez‐Rodríguez,Beatriz Martín‐García,Witold Skowroński,F. Calavalle,Stepan S. Tsirkin,Ivo Souza,Fernando de Juan,Andrey Chuvilin,A. Fert,Marco Gobbi,Fèlix Casanova,Luis E. Hueso
标识
DOI:10.1103/physrevlett.132.046303
摘要
Electrical transport in noncentrosymmetric materials departs from the well-established phenomenological Ohm's law. Instead of a linear relation between current and electric field, a nonlinear conductivity emerges along specific crystallographic directions. This nonlinear transport is fundamentally related to the lack of spatial inversion symmetry. However, the experimental implications of an inversion symmetry operation on the nonlinear conductivity remain to be explored. Here, we report on a large, nonlinear conductivity in chiral tellurium. By measuring samples with opposite handedness, we demonstrate that the nonlinear transport is odd under spatial inversion. Furthermore, by applying an electrostatic gate, we modulate the nonlinear output by a factor of 300, reaching the highest reported value excluding engineered heterostructures. Our results establish chiral tellurium as an ideal compound not just to study the fundamental interplay between crystal structure, symmetry operations and nonlinear transport; but also to develop wireless rectifiers and energy-harvesting chiral devices.
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