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准一维电荷密度波中新兴手性堆积序的圆二色性

Circular Dichroism of Emergent Chiral Stacking Orders in Quasi-One-Dimensional Charge Density Waves.

作者信息

Kim Sun-Woo, Kim Hyun-Jung, Cheon Sangmo, Kim Tae-Hwan

机构信息

Department of Physics and Research Institute for Natural Science, Hanyang University, Seoul 04763, Korea.

Department of Physics, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.

出版信息

Phys Rev Lett. 2022 Jan 28;128(4):046401. doi: 10.1103/PhysRevLett.128.046401.

Abstract

Chirality-driven optical properties in charge density waves are of fundamental and practical importance. Here, we investigate the interaction between circularly polarized light and emergent chiral stacking orders in quasi-one-dimensional (quasi-1D) charge-density waves (CDWs) with density-functional theory calculations. In our specific system, self-assembled In nanowires on a Si(111) surface, spontaneous mirror symmetry breaking leads to four symmetrically distinct degenerate quasi-1D CDW structures, which exhibit geometrical chirality. Such geometrical chirality may naturally induce optically active phenomena even when the quasi-1D CDW structures are stacked perpendicular to the CDW chain direction. Indeed, we find that left- and right-chiral stacking orders show distinct circular dichroism responses while a nonchiral stacking order has no circular dichroism. Such optical responses are attributed to the existence of glide mirror symmetry of the CDW stacking orders. Our findings suggest that the CDW chiral stacking orders can lead to diverse active optical phenomena such as chirality-dependent circular dichroism, which can be observed in scanning tunneling luminescence measurements with circularly polarized light.

摘要

电荷密度波中手性驱动的光学性质具有重要的基础和实际意义。在此,我们通过密度泛函理论计算研究圆偏振光与准一维(准1D)电荷密度波(CDW)中出现的手性堆叠序之间的相互作用。在我们的特定系统中,即Si(111)表面上自组装的In纳米线,自发的镜面对称性破缺导致四种对称不同的简并准1D CDW结构,它们表现出几何手性。即使准1D CDW结构垂直于CDW链方向堆叠,这种几何手性也可能自然地诱导光学活性现象。实际上,我们发现左旋和右旋手性堆叠序表现出不同的圆二色性响应,而非手性堆叠序则没有圆二色性。这种光学响应归因于CDW堆叠序的滑移镜面对称性的存在。我们的研究结果表明,CDW手性堆叠序可导致多种有源光学现象,如手性相关的圆二色性,这可以在圆偏振光的扫描隧道发光测量中观察到。

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