On the Possibility of Observing the Effect of Quantization of the Orbital Momentum, during the Passage of Laser Radiation through an Optical Fiber

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Resumo

The speed of propagation of optical radiation in an optical fiber is noticeably lower than the speed of light in vacuum. This fact opens the possibility to consider the propagation of light in fiber in the so-called comoving frame of reference. This type of consideration proved to be very useful and helping, for example, in studying the motion of ultrarelativistic charged particles and gamma rays in ordered media (channeling effect). This type of consideration makes it possible to notice some simple, albeit rather unexpected, macroscopic quantum effects that can manifest themselves when laser radiation passes through optical fibers. In particular, when photons propagate along an optical fiber twisted into a helix, at certain parameters of the helix, the effect of quantization of the moment of the photon momentum should reveal itself. Attracting attention to the possibility of such an effect is the goal of this note, which contains the formulation of the conditions and estimates of the parameters under which the effect of quantization of the angular momentum of photons moving along a spiral trajectory should be observed.

Sobre autores

N. Kalashnikov

National Nuclear Research University MEPhI

Autor responsável pela correspondência
Email: kalash@mephi.ru
Russia, 115409, Moscow

A. Olchak

National Nuclear Research University MEPhI

Autor responsável pela correspondência
Email: asolchak@mephi.ru
Russia, 115409, Moscow

Bibliografia

  1. Berestecky V.B., Lifshitz E.M., Pitaevsky L.P. Quantum Electrodynamics. Elsevier Publishers Ltd., 1982
  2. Chang W. Principles of Lasers and Optics, 2005. ISBN-13: 978-0521642293 ISBN-10: 0521642299
  3. Бейли Д., Райт Э. Волоконная оптика: теория и практика. Пер. с англ. М.: Кудиц-Пресс, 2008.
  4. Калашников Н.П., Ольчак А.С. // Поверхность. Рентген., синхротр. и нейтрон. исслед. 2017. № 6. С. 79.
  5. Kalashnikov N.P., Olchak A.S. // Journal of Surface Investigation X-ray, Synchrotron and Neutron Techniques. 2018. V. 12. № 2. P. 299
  6. Kalashnikov N.P., Olchak A.S. // Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques. 2022. V. 16. № 4. P. 659.
  7. Ландау Л.Д. Лифшиц Е.М. Теоретическая физика. Том III. Квантовая механика. М.: Наука, 1989.

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Declaração de direitos autorais © Н.П. Калашников, А.С. Ольчак, 2023