A spin-optoelectronic detector for the simultaneous measurement of the degree of circular polarization and intensity of a laser beam

探测器 光学 激光器 极化度 光子学 物理 极化(电化学) 圆极化 光电子学 螺旋度 梁(结构) 光强度 化学 微带线 散射 物理化学 粒子物理学
作者
Shailesh K. Khamari,S. Porwal,S. M. Oak,T. K. Sharma
出处
期刊:Applied Physics Letters [American Institute of Physics]
卷期号:107 (7) 被引量:12
标识
DOI:10.1063/1.4929326
摘要

Simultaneous measurement of the degree of circular polarization and intensity of a laser beam is essential in advanced photonic applications. However, it is not feasible with conventional helicity dependent detectors where an additional detector is needed to measure the intensity. Here, we report the development of a spin-optoelectronic detector that can measure the degree of circular polarization and the intensity of a laser beam simultaneously. The principle of operation of device is based on the two independent fundamental phenomena occurring in Au/InP hybrid structures, namely, Inverse Spin Hall Effect (ISHE) and the Photo-Voltaic (PV) Effect. The magnitude of ISHE and PV signals is simultaneously measured across the two pairs of contacts that are made on the top of device. No cross talk is observed between the two detectors made on the same chip. The all-electronic compact device is fast, operates at room temperature, and opens up the possibility of many applications in an integrated optoelectronic platform.
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