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基于电子自旋极化的集成光子器件。

Electron spin polarization-based integrated photonic devices.

作者信息

Trowbridge Christopher J, Norman Benjamin M, Stephens Jason, Gossard Arthur C, Awschalom David D, Sih Vanessa

机构信息

Department of Applied Physics, University of Michigan, 450 Church Street, Ann Arbor, Michigan 48109, USA.

出版信息

Opt Express. 2011 Aug 1;19(16):14845-51. doi: 10.1364/OE.19.014845.

Abstract

The lack of optical isolators has limited the serial integration of components in the development of photonic integrated circuits. Isolators are inherently nonreciprocal and, as such, require nonreciprocal optical propagation. We propose a class of integrated photonic devices that make use of electrically-generated electron spin polarization in semiconductors to cause nonreciprocal TE/TM mode conversion. Active control over the non-reciprocal mode coupling rate allows for the design of electrically-controlled isolators, circulators, modulators and switches. We analyze the effects of waveguide birefringence and absorption loss as limiting factors to device performance.

摘要

在光子集成电路的发展中,光学隔离器的缺失限制了组件的串行集成。隔离器本质上是不可逆的,因此需要不可逆的光传播。我们提出了一类集成光子器件,该器件利用半导体中电产生的电子自旋极化来实现不可逆的TE/TM模式转换。对不可逆模式耦合率的主动控制有助于设计电控隔离器、环行器、调制器和开关。我们分析了波导双折射和吸收损耗对器件性能的限制作用。

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