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Optics and Spectroscopy, 2021 Volume 129, Issue 11, Pages 1410–1416 (Mi os30)

Quantum optics

Highly efficient generation of squeezed states of light based on Laguerre–Gaussian modes in a cavity

E. N. Bashmakova, E. A. Vashukevich, T. Yu. Golubeva, Yu. M. Golubev

Saint Petersburg State University

Abstract: Today, the efficient generation of squeezed states of light seems to be a significant practical problem for various quantum-optical and information applications. In this paper, we investigate the possibility of increasing the efficiency of the generation of states based on the Laguerre–Gaussian light modes in the parametric down conversion due to the optimal choice of the cavity configuration. Analyzing the Heisenberg–Langevin equations for the eigenmodes of the system, we estimate the influence of the geometric parameters of the pump beam and the idler and signal beams on the efficiency of generation of squeezed states and on the degree of squeezing. The calculation for a finite number of modes has shown that the highest theoretically possible degree of squeezing in the system is -15.85 dB.

Keywords: squeezed light, Laguerre-Gaussian modes, orbital angular momentum, optimization of PDC geometric parameters.

Received: 28.06.2021
Revised: 01.07.2021
Accepted: 24.07.2021

DOI: 10.21883/OS.2021.11.51641.2484-21


 English version:
Optics and Spectroscopy, 2022, 130:14, 2120–2126

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© Steklov Math. Inst. of RAS, 2024