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Giant longitudinal spin Hall effect for elliptically polarized light under surface plasmon resonance
Chen Z; Zhen WM; Xu H; Zhuang GC; Zhang ZH; Zhang H; Zhang XG; Meng Y(孟洋)
Source PublicationJournal of Optics
2023-01
Volume25Issue:2Pages:025401
ISSN2040-8978
Abstract

We propose a novel and simple method for obtaining the giant longitudinal spin Hall effect (SHE) of the reflected light beam when the elliptically polarized light (instead of the linearly polarized light) at the telecommunication wavelength is obliquely incident on a prism–sodium interface excited by surface plasmon resonance. By introducing the spatially averaged Stokes parameter ${\bar S_3}$ for a non-uniformly polarized reflected light field, understanding the generation mechanism of the giant longitudinal SHE from a new perspective is realized. The giant longitudinal SHE under the elliptically polarized light reaches 60.28 μm by the optimal parameter setup, and the spin splitting direction of the SHE can be switched by adjusting the amplitude ratio angle and phase difference of the incident elliptically polarized light. These findings open the way for the precise measurement of the ellipticity of the elliptically polarized light and the design of novel fiber-optic devices.

DOI10.1088/2040-8986/aca91b
Indexed BySCI ; EI
Language英语
WOS IDWOS:000900764100001
ClassificationQ3
Ranking1
Citation statistics
Cited Times:4[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/91104
Collection宽域飞行工程科学与应用中心
Corresponding AuthorZhen WM; Meng Y(孟洋)
Recommended Citation
GB/T 7714
Chen Z,Zhen WM,Xu H,et al. Giant longitudinal spin Hall effect for elliptically polarized light under surface plasmon resonance[J]. Journal of Optics,2023,25,2,:025401.
APA Chen Z.,Zhen WM.,Xu H.,Zhuang GC.,Zhang ZH.,...&Meng Y.(2023).Giant longitudinal spin Hall effect for elliptically polarized light under surface plasmon resonance.Journal of Optics,25(2),025401.
MLA Chen Z,et al."Giant longitudinal spin Hall effect for elliptically polarized light under surface plasmon resonance".Journal of Optics 25.2(2023):025401.
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