Generation and decomposition of scalar and vector modes carrying orbital angular momentum: a review

全息术 光学 角动量 物理 轨道角动量复用 光束 光学工程 数字全息术 硅上液晶 计算机科学 极化(电化学) 光通信 光的轨道角动量 液晶 总角动量 物理化学 化学 量子力学
作者
Srinivas Pachava,Raghu Dharmavarapu,Vijayakumar Anand,Sruthy Jayakumar,Amogh Manthalkar,Awakash Dixit,Nirmal K. Viswanathan,Balaji Srinivasan,Shanti Bhattacharya
出处
期刊:Optical Engineering [SPIE]
卷期号:59 (04): 1-1 被引量:48
标识
DOI:10.1117/1.oe.59.4.041205
摘要

Orbital angular momentum (OAM), one of the most recently discovered degrees of freedom of light beam field has fundamentally revolutionized optical physics and its technological capabilities. Optical beams with OAM have enabled a large variety of applications, including super-resolution imaging, optical trapping, classical and quantum optical communication, and quantum computing, to mention a few. To enable these and several other emerging applications, optical beams with OAM have been generated using a variety of methods and technologies, such as a simple astigmatic lens pair, one-/two-dimensional holographic optical elements, three-dimensional spiral phase plates, optical fibers, and recent entrants such as metasurfaces. All these techniques achieve spatial light modulation and can be implemented with either passive elements or active devices, such as liquid crystal on silicon and digital micromirror devices. Many of these devices and technologies are not only used for the generation of amplitude phase-polarization structured light beams but are also capable of analyzing them. We have attempted to encompass a wide variety of such technologies as well as a few emerging methodologies, broadly categorized into generation and detection protocols. We address the needs of scientists and engineers who desire to generate/detect OAM modes and are looking for the technique (active or passive) best suited for their application.
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