Anisotropic resonant magnetoplasticity of NaCl crystals in the Earth’s magnetic field
Publication type: Journal Article
Publication date: 2013-02-05
scimago Q4
wos Q3
SJR: 0.183
CiteScore: 1.4
Impact factor: 1.8
ISSN: 10637834, 10906460, 17267498
Electronic, Optical and Magnetic Materials
Condensed Matter Physics
Abstract
Resonant relaxation of the dislocation structure under the action of crossed magnetic fields, i.e., constant magnetic field of the Earth (B Earth) and alternating radio-frequency field ( $\tilde B$ ), has been experimentally studied in a series of dielectric (NaCl) crystals with various compositions of impurities under variations in the frequency, direction of the pumping field $\tilde B$ , and orientation of the samples in the Earth’s magnetic field. The frequency dependence of the dislocation path length l(ν) exhibits peaks with various heights (l max) and resonant frequencies (νres). The maximum resonant effect has been observed for dislocations with the direction L orthogonal to the plane of crossed magnetic fields in a configuration of mutually perpendicular vectors {L, $\tilde B$ , B Earth} belonging, together with sample edges {a, b, c}, to the 〈100〉 system. Variation of the concentration C of calcium impurity in crystals of the NaClCa series only influenced the resonant peak height as $l_{\max } \propto 1/\sqrt C $ . Rotation of the magnetic field $\tilde B$ in the (b, c) plane from direction $\tilde B$ ⊥ B Earth to $\tilde B$ ∥ B Earth also did not influence the frequency of the resonance but changed its amplitude. Depending on the crystal type, this influence changed from rather insignificant (in crystals of the NaClLOMO series) to complete suppression of the effect for $\tilde B$ ∥ B Earth (in the NaClNik series). The resonant frequency νres is sensitive to orientation of the sample with respect to B Earth. Upon rotation of the crystal by the angle θ = ∠(c, B Earth) about the a ⊥ B Earth edge, the initial peak for dislocations L ‖ a at the crystal orientation θ = 0 and the frequency ν res 0 is replaced by a pair of peaks at frequencies ν1, 2 ≈ ν res 0 cosθ1, 2, where θ1 = 90° − θ and θ2 = θ. Previously, these peaks were observed separately in NaClNik crystals for $\tilde B$ ∥ c and $\tilde B$ ∥ b. In the present study, these peaks have been observed simultaneously for both orientations of $\tilde B$ in NaClLOMO and NaClCa crystals, where the resonance is not completely suppressed for $\tilde B$ ∥ B Earth.
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Total citations:
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Citations from 2024:
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(15.38%)
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Alshits V. et al. Anisotropic resonant magnetoplasticity of NaCl crystals in the Earth’s magnetic field // Physics of the Solid State. 2013. Vol. 55. No. 2. pp. 358-366.
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Alshits V., Darinskaya E. V., Koldaeva M. V., Petrzhik E. A. Anisotropic resonant magnetoplasticity of NaCl crystals in the Earth’s magnetic field // Physics of the Solid State. 2013. Vol. 55. No. 2. pp. 358-366.
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TY - JOUR
DO - 10.1134/S1063783413020030
UR - http://link.springer.com/10.1134/S1063783413020030
TI - Anisotropic resonant magnetoplasticity of NaCl crystals in the Earth’s magnetic field
T2 - Physics of the Solid State
AU - Alshits, V.I.
AU - Darinskaya, E V
AU - Koldaeva, M V
AU - Petrzhik, E A
PY - 2013
DA - 2013/02/05
PB - Pleiades Publishing
SP - 358-366
IS - 2
VL - 55
SN - 1063-7834
SN - 1090-6460
SN - 1726-7498
ER -
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BibTex (up to 50 authors)
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@article{2013_Alshits,
author = {V.I. Alshits and E V Darinskaya and M V Koldaeva and E A Petrzhik},
title = {Anisotropic resonant magnetoplasticity of NaCl crystals in the Earth’s magnetic field},
journal = {Physics of the Solid State},
year = {2013},
volume = {55},
publisher = {Pleiades Publishing},
month = {feb},
url = {http://link.springer.com/10.1134/S1063783413020030},
number = {2},
pages = {358--366},
doi = {10.1134/S1063783413020030}
}
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MLA
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Alshits, V.I., et al. “Anisotropic resonant magnetoplasticity of NaCl crystals in the Earth’s magnetic field.” Physics of the Solid State, vol. 55, no. 2, Feb. 2013, pp. 358-366. http://link.springer.com/10.1134/S1063783413020030.
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