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Dynamics of induced optical torque via optical vortex light

Sh AskarInformation Systems Engineering Department, Technical Engineering College, Erbil Polytechnic University, Erbil, IraqDheyaa J. JasimAmeer H. Al‐RubayeF OchilovThe Department of Audit, Tashkent State University of Economics, Tashkent, UzbekistanR. P. SinghDepartment of Electronics & Communication Engineering, Uttaranchal Institute of Technology, Uttaranchal University, Dehradun 248007, IndiaAshok KumarDepartment of Nuclear and Renewable Energy, Ural Federal University Named after the First President of Russia Boris Yeltsin, Ekaterinburg 620002, RussiaAhmed Read Al-TameemiAL-Nisour University College, Baghdad, IraqCarlos Rodriguez‐BenitesUniversidad César Vallejo, Chimbote, PeruEnas R. AlwailyAl-Ayen Iraqi UniversityAhmed AlawadiCollege of Technical Engineering, The Islamic University of Al Diwaniyah, Al Diwaniyah, Iraq
Laser Physics Lettersjournal2024en
ABI

Аннотация

Abstract This paper investigates the dynamics of induced torque in Nitrogen-Vacancy (NV) centers interacting with two weak optical vortex beams as well as a strong control field, exploring the impact of different system parameters such as control field intensity, detuning, magnetic field, and vortex beam strength. We find a dispersive torque behavior, indicating the sensitivity of NV centers to control parameters. Magnetic field induces level splitting, leading to a transformative effect on torque, with notable enhancements observed at specific intensities. Additionally, non-resonant torque is explored, demonstrating the controllability of torque peaks through magnetic field manipulation. Unequal strengths of vortex beams is found to yield substantial enhancements in torque. These results provide crucial insights into the induced torque dynamics in NV centers, presenting opportunities for optimized torque-based applications in quantum systems.

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