Quantum transport of a single photon through a subwavelength hole by a single atom


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Abstract

The localization and transport of a photon through a subwavelength hole with the help of a neutral atom are studied. A method proposed and realized in the study is based on the absorption of a photon by a neutral atom directly in front of a subwavelength hole, the flight of the atom through the hole, and photon emission on the other side of the screen. The influence of the interaction of the excited atom flying through the subwavelength channel with the screen material is estimated. The estimate showed that the atomic excitation can be quenched in holes with diameters smaller than 200 nm, which affects the photon transport efficiency.

About the authors

A. E. Afanasiev

Institute of Spectroscopy

Author for correspondence.
Email: afanasiev.isan@gmail.com
Russian Federation, Troitsk, Moscow, 108840

P. N. Melentiev

Institute of Spectroscopy

Email: afanasiev.isan@gmail.com
Russian Federation, Troitsk, Moscow, 108840

A. A. Kuzin

Institute of Spectroscopy; Moscow Institute of Physics and Technology

Email: afanasiev.isan@gmail.com
Russian Federation, Troitsk, Moscow, 108840; Dolgoprudnyi, Moscow oblast, 141700

A. Yu. Kalatskiy

Institute of Spectroscopy; Moscow Institute of Physics and Technology

Email: afanasiev.isan@gmail.com
Russian Federation, Troitsk, Moscow, 108840; Dolgoprudnyi, Moscow oblast, 141700

V. I. Balykin

Institute of Spectroscopy

Email: afanasiev.isan@gmail.com
Russian Federation, Troitsk, Moscow, 108840

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