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Linear electrodynamic response of to...
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Pronin, Artem V.
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Linear electrodynamic response of topological semimetals = experimental results versus theoretical predicitons /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Linear electrodynamic response of topological semimetals/ by Artem V. Pronin.
Reminder of title:
experimental results versus theoretical predicitons /
Author:
Pronin, Artem V.
Published:
Cham :Springer Nature Switzerland : : 2023.,
Description:
xi, 134 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Theoretical Background -- Nodal-line Semimetals -- Dirac and Weyl Semimetals -- Triple-point Semimetals -- Multifold Semimetals -- Summary.
Contained By:
Springer Nature eBook
Subject:
Semimetals - Electric properties. -
Online resource:
https://doi.org/10.1007/978-3-031-35637-7
ISBN:
9783031356377
Linear electrodynamic response of topological semimetals = experimental results versus theoretical predicitons /
Pronin, Artem V.
Linear electrodynamic response of topological semimetals
experimental results versus theoretical predicitons /[electronic resource] :by Artem V. Pronin. - Cham :Springer Nature Switzerland :2023. - xi, 134 p. :ill. (some col.), digital ;24 cm. - Springer series in solid-state sciences,v. 1992197-4179 ;. - Springer series in solid-state sciences ;v. 199..
Theoretical Background -- Nodal-line Semimetals -- Dirac and Weyl Semimetals -- Triple-point Semimetals -- Multifold Semimetals -- Summary.
This book provides a model description for the electromagnetic response of topological nodal semimetals and summarizes recent experimental findings in these systems. Specifically, it discusses various types of topological semimetals - Dirac, Weyl, nodal-line, triple-point, and multifold semimetals - and provides description for the characteristic features of the linear electrodynamic response for all these types of materials. Topological semimetals possess peculiar bulk electronic band structure, which leads to unusual electrodynamic response. For example, the low-energy inter-band optical conductivity of nodal semimetals is supposed to demonstrate power-law frequency dependence and the intra- and inter-band contributions to the conductivity are often mixed. Further, the magneto-optical response is also unusual, because of the non-equidistant spacing between the Landau levels. Finally, in semimetals with chiral electronic bands, e.g. in Weyl semimetals, the simultaneous application of parallel magnetic and electric fields leads to the chiral anomaly, i.e. to a misbalance between the electrons with diffident chiralities. This misbalance affects the electrodynamics properties of the material and can be detected optically. All these points are addressed here in detail. The book is written for a wide audience of physicists, working in the field of topological condensed matter physics. It gives a pedagogical introduction enabling graduate students and non-experts to familiarize themselves with the subject.
ISBN: 9783031356377
Standard No.: 10.1007/978-3-031-35637-7doiSubjects--Topical Terms:
3637500
Semimetals
--Electric properties.
LC Class. No.: TA455.S35 / P76 2023
Dewey Class. No.: 620.19
Linear electrodynamic response of topological semimetals = experimental results versus theoretical predicitons /
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experimental results versus theoretical predicitons /
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by Artem V. Pronin.
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Theoretical Background -- Nodal-line Semimetals -- Dirac and Weyl Semimetals -- Triple-point Semimetals -- Multifold Semimetals -- Summary.
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This book provides a model description for the electromagnetic response of topological nodal semimetals and summarizes recent experimental findings in these systems. Specifically, it discusses various types of topological semimetals - Dirac, Weyl, nodal-line, triple-point, and multifold semimetals - and provides description for the characteristic features of the linear electrodynamic response for all these types of materials. Topological semimetals possess peculiar bulk electronic band structure, which leads to unusual electrodynamic response. For example, the low-energy inter-band optical conductivity of nodal semimetals is supposed to demonstrate power-law frequency dependence and the intra- and inter-band contributions to the conductivity are often mixed. Further, the magneto-optical response is also unusual, because of the non-equidistant spacing between the Landau levels. Finally, in semimetals with chiral electronic bands, e.g. in Weyl semimetals, the simultaneous application of parallel magnetic and electric fields leads to the chiral anomaly, i.e. to a misbalance between the electrons with diffident chiralities. This misbalance affects the electrodynamics properties of the material and can be detected optically. All these points are addressed here in detail. The book is written for a wide audience of physicists, working in the field of topological condensed matter physics. It gives a pedagogical introduction enabling graduate students and non-experts to familiarize themselves with the subject.
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Physics and Astronomy (SpringerNature-11651)
based on 0 review(s)
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W9460368
電子資源
11.線上閱覽_V
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EB TA455.S35 P76 2023
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