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Pis'ma v Zh. Èksper. Teoret. Fiz., 2016, Volume 104, Issue 5, Pages 362–373 (Mi jetpl5061)  

This article is cited in 10 scientific papers (total in 10 papers)

SCIENTIFIC SUMMARIES

Resonance magnetoplasticity in ultralow magnetic fields

V. I. Alshits, E. V. Darinskaya, M. V. Koldaeva, E. A. Petrzhik

Shubnikov Institute of Crystallography, Russian Academy of Sciences, Moscow, Russia

Abstract: Resonance relaxation displacements of dislocations in NaCl crystals placed in crossed static and alternating ultralow magnetic fields in the electron paramagnetic resonance scheme are discussed. The Earth's magnetic field $B_{Earth}\approx50\mu\mathrm{T}$ and other fields in the range of $26{-}261 \mu\mathrm{T}$ are used as the static field. New strongly anisotropic properties of the effect have been revealed. Frequency spectra including numerous peaks of paths at low pump frequencies beginning with $10$ kHz, as well as the quartet of equidistant peaks at high frequencies ($\sim1.4$ MHz at $B=B_{Earth}$), have been measured. The effect is also observed in the pulsed pump field with a resonance duration of $\sim0.5 \mu s$. Resonance changes have been detected in the microhardness of ZnO, triglycine sulfate, and potassium hydrogen phthalate crystals after their exposure in the Earth's magnetic field in the same electron paramagnetic resonance scheme.

Funding Agency Grant Number
Russian Academy of Sciences - Federal Agency for Scientific Organizations 1
Russian Foundation for Basic Research 10-02-01099_
13-02-00341_


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English version:
Journal of Experimental and Theoretical Physics Letters, 2016, 104:5, 353–364

Bibliographic databases:

Received: 22.07.2016

Citation: V. I. Alshits, E. V. Darinskaya, M. V. Koldaeva, E. A. Petrzhik, “Resonance magnetoplasticity in ultralow magnetic fields”, Pis'ma v Zh. Èksper. Teoret. Fiz., 104:5 (2016), 362–373; JETP Letters, 104:5 (2016), 353–364

Citation in format AMSBIB
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\paper Resonance magnetoplasticity in ultralow magnetic fields
\jour Pis'ma v Zh. \`Eksper. Teoret. Fiz.
\yr 2016
\vol 104
\issue 5
\pages 362--373
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\transl
\jour JETP Letters
\yr 2016
\vol 104
\issue 5
\pages 353--364
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    This publication is cited in the following articles:
    1. D. Driaev, A. Iashvili, L. Kankadze, S. Tsakadze, Rev. Sci. Instrum., 88:5 (2017), 054904  crossref  isi
    2. O. Guillon, Ch. Elsaesser, O. Gutfleisch, J. Janek, S. Korte-Kerzel, D. Raabe, C. A. Volkert, Mater. Today, 21:5 (2018), 527–536  crossref  isi
    3. I. S. Volchkov, V. M. Kanevskii, M. D. Pavlyuk, JETP Letters, 107:4 (2018), 269–272  mathnet  crossref  crossref  isi  elib
    4. V. I. Alshits, M. V. Koldaeva, E. A. Petrzhik, JETP Letters, 107:10 (2018), 618–623  mathnet  crossref  crossref  isi  elib  elib
    5. E. V. Darinskaya, M. V. Koldaeva, V. I. Alshits, I. M. Pritula, A. E. Voloshin, Crystallogr. Rep., 63:6 (2018), 961–963  crossref  isi  scopus
    6. O. M. Petchenko, G. O. Petchenko, S. M. Boiko, Probl. At. Sci. Technol., 2018, no. 5, 16–20  isi
    7. O. M. Petchenko, G. O. Petchenko, S. M. Boiko, Probl. At. Sci. Technol., 2018, no. 5, 24–28  isi
    8. A. L. Buchachenko, Phys. Usp., 62:1 (2019), 46–53  mathnet  crossref  crossref  adsnasa  isi  elib
    9. Petchenko O.M. Petchenko G.O. Boiko S.M., Probl. At. Sci. Technol., 2019, no. 2, 39–49  isi
    10. M. V. Galustashvili, D. G. Driaev, V. G. Kvachadze, Pisma v ZhETF, 110:12 (2019), 793–796  mathnet  crossref
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