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28 March 2024
 
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Results 1 to 20 of 50 for query "V.I.Kozub". (0.00 sec.)

[    1    2    3    ]   Next
1.
Spontaneous current generation in gated nanostructures
D. W. Horsell; A. K. Savchenko; Y. M. Galperin; V. I. Kozub; V. M. Vinokur; D. A. Ritchie;
24 Nov 2004
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2.
On the theory of thermoelectric phenomena in superconductors
Y. M. Galperin; V. L. Gurevich; V. I. Kozub; A. L. Shelankov;
19 Dec 2000
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3.
Evidence of the virtual Anderson transition in a narrow impurity band of p-GaAs/AlGaAs quantum wells: $epsilon_4$ conductivity and electric breakdown at low temperature
N.V.Agrinskaya; V.I.Kozub; D.V.Shamshur;
5 Oct 2007
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4.
Non-Gaussian conductance noise in disordered electronic systems due to a non-linear mechanism
V. Orlyanchik; V. I. Kozub; Z. Ovadyahu;
31 Oct 2006
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5.
Tunneling magnetoresistance in ensembles of ferromagnetic granules with exchange interaction and random easy axes of magnetic anisotropy
Y.M. Beltukov; V.I. Kozub; A.V. Shumilin; N.P. Stepina;
13 Dec 2020
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6.
AC-Hopping Conductance of Self-Organized Ge/Si Quantum Dot Arrays
Irina L. Drichko; Andrey M. Diakonov; Veniamin I. Kozub; Ivan Yu. Smirnov; Yuri M. Galperin; Andrew I. Yakimov; Alexander I. Nikiforov;
12 Nov 2003
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7.
Effective description of hopping transport in granular metals
I.S. Beloborodov; A.V. Lopatin; V.M. Vinokur; V.I. Kozub;
6 Dec 2004
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8.
Slow relaxations of magnetoresistance in AlGaAs-GaAs quantum well structures quenched in a magnetic field
N. V.Agrinskaya; V. I. Kozub; D. V. Shamshur; A. V. Shumilin; Y. M. Galperin;
5 Mar 2010
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9.
Electron-phonon Interaction in Non-polar Quantum Dots Induced by the Amorphous Polar Environment
A.N. Poddubny; S. V. Goupalov; V.I. Kozub; I. N. Yassievich;
7 Aug 2008
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10.
Electrical manipulation of nanomagnets
L Y Gorelik; R I Shekhter; V M Vinokur; D E Feldman; V I Kozub; M Jonson;
22 Aug 2003   /  Phys Rev Lett, 91 (8), 088301
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11.
Magnetoresistance of p-GaAs/AlGaAs structures in the vicinity of metal-insulator transition: Effect of superconducting leads
N.V.Agrinskaya; V.I.Kozub; A.V.Chernyaev; D.V. Shamshur; A.A. Zuzin;
27 Oct 2004
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12.
Temperature-dependent disorder and magnetic field driven disorder: experimental observations for doped GaAs/AlGaAs quantum well structures
N.V. Agrinskaya; V.A. Berezovets; V.I. Kozub;
9 Dec 2015
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13.
Low temperature transport properties of multigraphene structures on 6H-SiC obtained by thermal graphitization: evidences of a presence of nearly perfect graphene layer
A.A.Lebedev; N.V.Agrinskaya; V.A.Beresovets; V.I.Kozub; S.P.Lebedev; A.A.Sitnikova;
18 Dec 2012
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14.
Slow relaxation of magnetoresistance in doped p -GaAs/AlGaAs layers with partially filled upper Hubbard band
N.V.Agrinskaya; V.I.Kozub; D.V.Shamshur; A.Shumilin;
30 Oct 2008
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15.
Josephson transport through a Hubbard impurity center
V I Kozub; A V Lopatin; V M Vinokur;
6 Jun 2003   /  Phys Rev Lett, 90 (22), 226805
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16.
Josephson transport through a Hubbard impurity center
V.I. Kozub; A.V. Lopatin; V.M. Vinokur;
20 Dec 2002
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17.
Electric bias-controlled switching of magnetization of ferrimagnetically coupled Mn delta-layers in a GaAs-AlGaAs quantum well
N. V. Agrinskaya; A. M. Kalashnikova; V. I. Kozub;
18 Jul 2019
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18.
Interference mechanism of magnetoresistance in variable range hopping conduction: the effect of paramagnetic electron spins and continuous spectrum of scatterer energies
A. V. Shumilin; V. I. Kozub;
10 Jan 2012
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19.
Suppression of the virtual Anderson transition in a narrow impurity band of doped quantum well structures
N.V. Agrinskaya; V.I. Kozub; D.S. Poloskin;
31 Aug 2011
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20.
Comment on "Weak localization in GaMnAs: evidence of impurity band transport" by L. P. Rokhinson et. al. (Phys. Rev. B, 76, 161201 R; arXivCond-mat:0707.2416)
N.V. Agrinskaya; V.I. Kozub;
3 Dec 2009
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