Manipulating the transverse spin angular momentum and Belinfante momentum of spin-polarized light by a tilted stratified medium in optical tweezers
Sauvik Roy, Nirmalya Ghosh, Ayan Banerjee, Subhasish Dutta Gupta

TL;DR
This paper demonstrates how a tilted stratified medium in optical tweezers can manipulate the transverse spin angular momentum and Belinfante momentum of light, enabling enhanced control over particle manipulation through spin-orbit interactions.
Contribution
It introduces a novel tilted stratified medium setup in optical tweezers that allows independent control of transverse spin angular momentum components, unlike previous configurations.
Findings
Generation of both orthogonal TSAM components due to tilt
Dependence of TSAM magnitude on tilt angle and helicity
Enhanced spin-controlled particle manipulation potential
Abstract
In the recent past, optical tweezers incorporating a stratified medium have been exploited to generate complex translational and rotational dynamics in mesoscopic particles due to the coupling between the spin and orbital angular momentum of the light, generated as a consequence of the tight focusing of light by a high numerical aperture objective lens into the stratified medium. Here, we consider an optical tweezers system with a tilted stratified medium (direction of stratification at an angle with the axis of the incident beam), and show that for input circularly polarized Gaussian beams, the resulting spin-orbit interaction deeply influences the generation of transverse spin angular momentum (TSAM) and Belinfante momentum of light, and allows additional control on their magnitude. Importantly, the TSAM generated in our system consists of both the orthogonal components, which is in…
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