Longitudinal Spin Hall Effect of Polarization Vortices with a Carrier Frequency

IF 1 Q4 OPTICS
V. V. Kotlyar, A. G. Nalimov, A. A. Kovalev
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引用次数: 0

Abstract

We derive the axial projection of the spin angular momentum (SAM) vector for a vector Gaussian beam with 1D periodic amplitude modulation. Such a beam has zero SAM in the source plane and its polarization is inhomogeneous linear. We demonstrate that when such a beam propagates, its periodic modulation effectively splits the beam into two, having elliptic polarization of opposite handedness. Therefore, the spin Hall effect is shown to arise, since the cross section of the beam contains alternating domains with nonzero spin of opposite sign. For generating such a field, a metasurface can be employed, whose transmittance is changing with one coordinate periodically.

Abstract Image

载流子频率极化涡的纵向自旋霍尔效应
我们推导了一维周期调幅的矢量高斯光束的自旋角动量矢量的轴向投影。这种光束在源平面上具有零SAM,其偏振是非均匀线性的。我们证明了当这样的光束传播时,它的周期调制有效地将光束分成两束,具有相反旋向的椭圆偏振。因此,自旋霍尔效应出现,因为光束的横截面包含具有相反符号的非零自旋的交替域。为了产生这样的场,可以使用透光率随一个坐标周期性变化的超表面。
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来源期刊
CiteScore
1.50
自引率
11.10%
发文量
25
期刊介绍: The journal covers a wide range of issues in information optics such as optical memory, mechanisms for optical data recording and processing, photosensitive materials, optical, optoelectronic and holographic nanostructures, and many other related topics. Papers on memory systems using holographic and biological structures and concepts of brain operation are also included. The journal pays particular attention to research in the field of neural net systems that may lead to a new generation of computional technologies by endowing them with intelligence.
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