Polarization-Dependent Optical Properties and Optoelectronic Devices of 2D Materials.

Polarization-Dependent Optical Properties and Optoelectronic Devices of 2D Materials.
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二维材料的偏振相关光学特性和光电器件

DOI:
10.34133/2020/5464258
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发表时间:
2020
期刊:
Research (Washington, D.C.)
影响因子:
--
通讯作者:
Pan A
Pan A
中科院分区:
其他
文献类型:
--
作者:
Li Z;Xu B;Liang D;Pan A

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光电子器件的发展要求在新的材料体系和器件机理上有所突破,目前的要求已从对信号强度和响应度的检测转向对偏振态信息灵敏度的探索。二维(2D)材料是表现出用于偏振器件应用的不同物理和电子性质的丰富家族,包括各向异性材料、谷电子材料和其它混合异质结构。本文首先综述了二维材料中偏振光相关的物理机制,然后详细介绍了二维材料的光学和光电性质,包括拉曼位移、光吸收、光发射和功能光电器件。最后对未来的发展和挑战进行了评论。大量的二维材料及其异质结构为偏振相关的科学发现和光电器件应用提供了希望。
The development of optoelectronic devices requires breakthroughs in new material systems and novel device mechanisms, and the demand recently changes from the detection of signal intensity and responsivity to the exploration of sensitivity of polarized state information. Two-dimensional (2D) materials are a rich family exhibiting diverse physical and electronic properties for polarization device applications, including anisotropic materials, valleytronic materials, and other hybrid heterostructures. In this review, we first review the polarized-light-dependent physical mechanism in 2D materials, then present detailed descriptions in optical and optoelectronic properties, involving Raman shift, optical absorption, and light emission and functional optoelectronic devices. Finally, a comment is made on future developments and challenges. The plethora of 2D materials and their heterostructures offers the promise of polarization-dependent scientific discovery and optoelectronic device application.
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