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Magnetotransport phenomena in layered conductors under magnetic breakdown

We study the transport phenomena in layered conductors with rather general electron energy spectrum placed in a high magnetic field H , under conditions when the distance between various sheets of the Fermi surface (FS) may become small under the external effects, such as hydrostatic pressure or imp... Full description

Contributors: Galbova, O
Peschansky, V. G
Stepanenko, D. I
Contained in: International journal of modern physics / B Singapore [u.a.] : World Scientific Publ Vol. 31, No. 14 (2017)
Journal Title: International journal of modern physics / B
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Links: Volltext (dx.doi.org)
ISSN: 0217-9792
DOI: 10.1142/S0217979217501144
Regional Holdings: TIB – German National Library of Science and Technology
Language: English
Notes: Copyright: © 2017, World Scientific Publishing Company
ID (e.g. DOI, URN): 10.1142/S0217979217501144
PPN (Catalogue-ID): OLC1995051934
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520 |a We study the transport phenomena in layered conductors with rather general electron energy spectrum placed in a high magnetic field H , under conditions when the distance between various sheets of the Fermi surface (FS) may become small under the external effects, such as hydrostatic pressure or impurity atom doping, and electrons can transfer from one sheet of the FS to another due to magnetic breakdown. We calculate the dependence of the in-plane electrical conductivity and magnetoresistance on magnetic field and probability of magnetic breakdown and show that the field-induced quadratic increase of the in-plane resistance in the absence of magnetic breakdown is changed by a linear dependence on H . With a further reduction of the energy gap between FS sheets, the in-plane resistance is saturated. 
700 1 |a Galbova, O 
700 1 |a Peschansky, V. G 
700 1 |a Stepanenko, D. I 
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