The radiation from ultrafast point dipoles, moving uniformly near chiral media

The article discusses the features of the radiation of ultrafast point clusters of charged particles moving uniformly near a gyrotropic medium interface. It is shown that some types of electromagnetic radiation – transient and/or Cherenkov radiation – have the characteristics of superchiral fields....

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Main Author: V. N. Kadantsev
Format: Article
Language:Russian
Published: MIREA - Russian Technological University 2021-06-01
Series:Российский технологический журнал
Subjects:
Online Access:https://www.rtj-mirea.ru/jour/article/view/325
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author V. N. Kadantsev
author_facet V. N. Kadantsev
author_sort V. N. Kadantsev
collection DOAJ
description The article discusses the features of the radiation of ultrafast point clusters of charged particles moving uniformly near a gyrotropic medium interface. It is shown that some types of electromagnetic radiation – transient and/or Cherenkov radiation – have the characteristics of superchiral fields. Therefore, they can be effectively used to study chiral structures (for example, to detect circular dichroism, the frequency characteristics of refractive indices), various materials, including biomaterials. Ultrafast (relativistic) particles can serve as a «tool» not only for studying the structure of various materials. They can also be used as «generators» of quasiparticles that determine the «dynamic» properties of the materials under study, as well as the features of their interaction with radiation of various nature and response to external influences. In this paper, some types of circularly polarized EM waves propagating in optically active (magnetoactive, naturally active, gyrotropic, and chiral) media are considered. Using the generalized reciprocity theorem for media characterized by the Hermitian permittivity tensor, we consider the transient and Cherenkov radiation excited by a uniformly moving bunch of charged particles when it crosses (or moves along) the interface of media, one of which is an optically active gyrotropic medium. It is shown that the superchiral electromagnetic fields of the transition and Cherenkov radiation of dipoles can serve as a source of chiral collective excitations in magnetoactive and naturally active media. The investigated mechanisms of interaction of electromagnetic radiation with chiral materials (structures and media) are one of the possible physical approaches to solving the problem of the chiral purity of the biosphere and to elucidate the factor of deracemization of the organic primeval environment. A new hypothesis is presented, suggesting that ultra-high-speed clumps of charged particles of cosmic origin can cause deracemization of the prebiosphere.
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spelling doaj-art-28c573d849b04205be67b0d0b5129f342025-02-03T11:45:50ZrusMIREA - Russian Technological UniversityРоссийский технологический журнал2500-316X2021-06-0193243910.32362/2500-316X-2021-9-3-24-39259The radiation from ultrafast point dipoles, moving uniformly near chiral mediaV. N. Kadantsev0MIREA – Russian Technological UniversityThe article discusses the features of the radiation of ultrafast point clusters of charged particles moving uniformly near a gyrotropic medium interface. It is shown that some types of electromagnetic radiation – transient and/or Cherenkov radiation – have the characteristics of superchiral fields. Therefore, they can be effectively used to study chiral structures (for example, to detect circular dichroism, the frequency characteristics of refractive indices), various materials, including biomaterials. Ultrafast (relativistic) particles can serve as a «tool» not only for studying the structure of various materials. They can also be used as «generators» of quasiparticles that determine the «dynamic» properties of the materials under study, as well as the features of their interaction with radiation of various nature and response to external influences. In this paper, some types of circularly polarized EM waves propagating in optically active (magnetoactive, naturally active, gyrotropic, and chiral) media are considered. Using the generalized reciprocity theorem for media characterized by the Hermitian permittivity tensor, we consider the transient and Cherenkov radiation excited by a uniformly moving bunch of charged particles when it crosses (or moves along) the interface of media, one of which is an optically active gyrotropic medium. It is shown that the superchiral electromagnetic fields of the transition and Cherenkov radiation of dipoles can serve as a source of chiral collective excitations in magnetoactive and naturally active media. The investigated mechanisms of interaction of electromagnetic radiation with chiral materials (structures and media) are one of the possible physical approaches to solving the problem of the chiral purity of the biosphere and to elucidate the factor of deracemization of the organic primeval environment. A new hypothesis is presented, suggesting that ultra-high-speed clumps of charged particles of cosmic origin can cause deracemization of the prebiosphere.https://www.rtj-mirea.ru/jour/article/view/325remote sensing of the earthspacecraftimages of earth landscapesmathematical modelcompensation of kinematic image blurringangular velocity
spellingShingle V. N. Kadantsev
The radiation from ultrafast point dipoles, moving uniformly near chiral media
Российский технологический журнал
remote sensing of the earth
spacecraft
images of earth landscapes
mathematical model
compensation of kinematic image blurring
angular velocity
title The radiation from ultrafast point dipoles, moving uniformly near chiral media
title_full The radiation from ultrafast point dipoles, moving uniformly near chiral media
title_fullStr The radiation from ultrafast point dipoles, moving uniformly near chiral media
title_full_unstemmed The radiation from ultrafast point dipoles, moving uniformly near chiral media
title_short The radiation from ultrafast point dipoles, moving uniformly near chiral media
title_sort radiation from ultrafast point dipoles moving uniformly near chiral media
topic remote sensing of the earth
spacecraft
images of earth landscapes
mathematical model
compensation of kinematic image blurring
angular velocity
url https://www.rtj-mirea.ru/jour/article/view/325
work_keys_str_mv AT vnkadantsev theradiationfromultrafastpointdipolesmovinguniformlynearchiralmedia
AT vnkadantsev radiationfromultrafastpointdipolesmovinguniformlynearchiralmedia