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Optical communication, optical information science, and optical computations
The influence of diffraction on storage of the squeezed light pulse in the multimode resonant quantum memory on a thermal ensemble of atoms
E. R. Zinatullin, K. S. Tikhonov, T. Yu. Golubeva, Yu. M. Golubev Saint Petersburg State University
Abstract:
We cosider the influence of diffraction on the storage of the quantum state of a pulse of squeezed light on a warm atomic ensemble with the collinear configuration of light fields. Even in the case of forward read out when both signal and driving light fields propagate in the same direction as during writing, the motion of atoms leads to the uncompensated phase shift. Because of this phase shift, the squeezed quadrature mixed with the stretched quadrature. As a result, the squeezing of the pulse can be significantly reduced. The article considers the influence of diffraction for different configurations of multimode resonant quantum memory and shows how to reduce this effect to its possible minimum.
Keywords:
squeezed light, quantum memory, thermal motion of atoms.
Received: 20.05.2020 Revised: 22.05.2020 Accepted: 05.06.2020
Citation:
E. R. Zinatullin, K. S. Tikhonov, T. Yu. Golubeva, Yu. M. Golubev, “The influence of diffraction on storage of the squeezed light pulse in the multimode resonant quantum memory on a thermal ensemble of atoms”, Optics and Spectroscopy, 128:9 (2020), 1346–1362; Optics and Spectroscopy, 128:9 (2020), 1458–1474
Linking options:
https://www.mathnet.ru/eng/os314 https://www.mathnet.ru/eng/os/v128/i9/p1346
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Abstract page: | 40 | Full-text PDF : | 15 |
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