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磷烯光学活性的应变工程

Strain engineering of optical activity in phosphorene.

作者信息

Khoa Doan Quoc, Davoudiniya Masoumeh, Hoi Bui Dinh, Yarmohammadi Mohsen

机构信息

Division of Computational Physics, Institute for Computational Science, Ton Duc Thang University Ho Chi Minh City Viet Nam

Faculty of Electrical and Electronics Engineering, Ton Duc Thang University Ho Chi Minh City Viet Nam.

出版信息

RSC Adv. 2019 Jun 17;9(33):19006-19015. doi: 10.1039/c9ra03696b. eCollection 2019 Jun 14.

Abstract

Optical activity is one of the most fascinating fields in current physics. The strong anisotropic feature in monolayer phosphorene leads to the emergence of non-trivial optoelectronic physics. This paper is devoted to a detailed analysis of strain effects on the optical activity of phosphorene ranging from low-optical-field to high-optical-field. To do so, a numerical study of the two-band tight-binding model is accomplished using the Harrison rule and the linear response theory. Although the transparency of phosphorene confirms at all frequencies independent of the strain modulus and direction, on average, from low- to high-optical-field limit, the polarization of the reflected wave at critical strains becomes circular and the ellipse axis tends to a rotation of 180°. It is found that the maximum absorption takes place at high-energy transitions, which quantitatively depends strongly on the strain modulus and direction. Furthermore, a detailed investigation of compressive and tensile strains results in the dominant contribution of the in-plane compressive and out-of-plane tensile strains to the reflected/transmitted light for low- and intermediate-optical-field ranges, whilst both contribute for the high-optical-field limit. However, overall, in-plane compressive and out-of-plane tensile strains come in to play a role in the absorption spectra. Thereby, the quality of the determined reflection, transmission and absorption waves depends on the regarded regime of the optical field, strain modulus, and strain orientation. These findings if sufficient can be performed and/or tuned experimentally, and a vast number of phosphorene-based optoelectronic devices can be achieved.

摘要

旋光性是当前物理学中最具吸引力的领域之一。单层磷烯中的强各向异性特征导致了非平凡的光电物理现象的出现。本文致力于详细分析从低光场到高光场范围内应变对磷烯旋光性的影响。为此,利用哈里森规则和线性响应理论对两带紧束缚模型进行了数值研究。尽管磷烯的透明度在所有频率下均与应变模量和方向无关,但平均而言,从低光场到高光场极限,临界应变下反射波的偏振变为圆形,椭圆轴趋于180°旋转。研究发现,最大吸收发生在高能跃迁处,这在定量上强烈依赖于应变模量和方向。此外,对压缩应变和拉伸应变的详细研究表明,在低光场和中等光场范围内,面内压缩应变和面外拉伸应变对反射/透射光起主要作用,而在高光场极限下两者都起作用。然而,总体而言,面内压缩应变和面外拉伸应变在吸收光谱中起作用。因此,所确定的反射、透射和吸收波的质量取决于所考虑的光场范围、应变模量和应变取向。如果这些发现足够充分,就可以通过实验进行实现和/或调整,从而实现大量基于磷烯的光电器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe91/9065164/8b2cfc2eaff5/c9ra03696b-f1.jpg

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