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P,T-odd Faraday rotation in intracavity absorption spectroscopy with particle beam as a possible way to improve the sensitivity of the search for the time reflection noninvariant effects in nature. / Kutuzov, V. N.; Chubukov, D. V.; Skripnikov, L. V.; Petrov, A. N.; Labzowsky, L. N.

в: Annals of Physics, Том 434, 168591, 11.2021.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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@article{c60d67efa9ab44838a713f74a8c85c52,
title = "P,T-odd Faraday rotation in intracavity absorption spectroscopy with particle beam as a possible way to improve the sensitivity of the search for the time reflection noninvariant effects in nature",
abstract = "Possible experiments on the observation of the P,T - odd Faraday effect (rotation of polarization plane for the light, propagating through a medium in the presence of an external electric field, P - is the space inversion, T - is the time reflection) caused by the electron electric dipole moment in atoms and molecules, are discussed theoretically. An observation is assumed to be performed on the basis of modern intra-cavity absorption spectroscopy (ICAS) combined with atomic (molecular) beam techniques. The P,T - odd optical rotation is due to the linear Stark splitting of atomic or molecular levels. This leads to the difference between the refractive indexes for the right and left circularly polarized photons.",
keywords = "Calculation, Experiment proposing, Numerical approximation, P,T - odd effect, Theoretical physics, P, ELECTRIC-DIPOLE MOMENT, T-odd effect",
author = "Kutuzov, {V. N.} and Chubukov, {D. V.} and Skripnikov, {L. V.} and Petrov, {A. N.} and Labzowsky, {L. N.}",
note = "Publisher Copyright: {\textcopyright} 2021",
year = "2021",
month = nov,
doi = "10.1016/j.aop.2021.168591",
language = "English",
volume = "434",
journal = "Annals of Physics",
issn = "0003-4916",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - P,T-odd Faraday rotation in intracavity absorption spectroscopy with particle beam as a possible way to improve the sensitivity of the search for the time reflection noninvariant effects in nature

AU - Kutuzov, V. N.

AU - Chubukov, D. V.

AU - Skripnikov, L. V.

AU - Petrov, A. N.

AU - Labzowsky, L. N.

N1 - Publisher Copyright: © 2021

PY - 2021/11

Y1 - 2021/11

N2 - Possible experiments on the observation of the P,T - odd Faraday effect (rotation of polarization plane for the light, propagating through a medium in the presence of an external electric field, P - is the space inversion, T - is the time reflection) caused by the electron electric dipole moment in atoms and molecules, are discussed theoretically. An observation is assumed to be performed on the basis of modern intra-cavity absorption spectroscopy (ICAS) combined with atomic (molecular) beam techniques. The P,T - odd optical rotation is due to the linear Stark splitting of atomic or molecular levels. This leads to the difference between the refractive indexes for the right and left circularly polarized photons.

AB - Possible experiments on the observation of the P,T - odd Faraday effect (rotation of polarization plane for the light, propagating through a medium in the presence of an external electric field, P - is the space inversion, T - is the time reflection) caused by the electron electric dipole moment in atoms and molecules, are discussed theoretically. An observation is assumed to be performed on the basis of modern intra-cavity absorption spectroscopy (ICAS) combined with atomic (molecular) beam techniques. The P,T - odd optical rotation is due to the linear Stark splitting of atomic or molecular levels. This leads to the difference between the refractive indexes for the right and left circularly polarized photons.

KW - Calculation

KW - Experiment proposing

KW - Numerical approximation

KW - P,T - odd effect

KW - Theoretical physics

KW - P

KW - ELECTRIC-DIPOLE MOMENT

KW - T-odd effect

UR - http://www.scopus.com/inward/record.url?scp=85117573214&partnerID=8YFLogxK

UR - https://www.mendeley.com/catalogue/2bd18f58-c32d-3c2f-a9bf-2b1fafc54ec4/

U2 - 10.1016/j.aop.2021.168591

DO - 10.1016/j.aop.2021.168591

M3 - Article

AN - SCOPUS:85117573214

VL - 434

JO - Annals of Physics

JF - Annals of Physics

SN - 0003-4916

M1 - 168591

ER -

ID: 87634759