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Terahertz vortex generation methods rippled and vortex plasmas

机译:太赫兹涡旋发电方法波纹和涡等离子体

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摘要

Terahertz vortices have strong potential for many applications such as imaging and sensing in medicine, biomedical engineering, rotations of molecules, quantum condensation, optical tweezers, manipulation of electron beams, and communications. However, owing to recent developments, there has been less research about vortex generation in the terahertz domain. Due to the damaging limit and low conversion efficiency, a few schemes to generate terahertz vortices based on plasma have recently been reported. Generally, to excite the helicity of the terahertz vortices, two scenarios have been reported: one is transferring the orbital angular momentum from the plasma vortex to the emitted terahertz radiation, and the other is exciting the helicity of the terahertz vortices using twisted input lasers. This paper is a review of recent studies on terahertz vortex generation based on the rippled and vortex plasma substrata. (C) 2019 Optical Society of America
机译:太赫兹涡流对许多应用具有很强的潜力,例如医学,生物医学工程,分子的旋转,量子缩合,光学镊子,电子束操纵和通信的旋转。 然而,由于最近的发展,在太赫兹领域的涡流生成较少研究。 由于损坏的极限和低转换效率,最近据报道了一些基于等离子体的太赫兹涡流的一些方案。 通常,为了激发Terahertz涡旋的螺旋,已经报道了两种情况:一个方案是将轨道角动量从等离子体涡旋转移到发射的太赫兹辐射,另一个是使用扭曲的输入激光器激发太赫兹涡流的螺旋状。 本文是对基于波纹和涡旋等离子体副数据的近期Terahertz Vortex生成研究的综述。 (c)2019年光学学会

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