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Dive into the research topics where G. A. Petrakovskii is active.

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Featured researches published by G. A. Petrakovskii.


Physical Review B | 2010

Single magnetic chirality in the magnetoelectric NdFe3(11BO3)4

M. Janoschek; Peter Fischer; J. Schefer; B. Roessli; Vladimir Pomjakushin; M. Meven; V. Petricek; G. A. Petrakovskii; L. Bezmaternikh

We have performed an extensive study of single-crystals of the magneto-electric NdFe


Journal of Experimental and Theoretical Physics | 2004

Antiferromagnetic resonance and phase diagrams of gadolinium ferroborate GdFe3(BO3)4

A.I. Pankrats; G. A. Petrakovskii; L. N. Bezmaternykh; O. A. Bayukov

_3


Physics of the Solid State | 2000

Magnetic susceptibility and magnetic-field behavior of CuB2O4 copper metaborate

G. A. Petrakovskii; A. D. Balaev; A. M. Vorotynov

(


Physical Review B | 2001

Spin-glass state inCuGa2O4

G. A. Petrakovskii; K. S. Aleksandrov; L. N. Bezmaternikh; S. S. Aplesnin; B. Roessli; F. Semadeni; A. Amato; C. Baines; J. Bartolomé; Marco Evangelisti

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Physics of the Solid State | 2000

Antiferromagnetic resonance in CuB2O4 single crystal

A. I. Pankrats; G. A. Petrakovskii; N. V. Volkov

BO


Solid State Communications | 1991

Magnetic, resonance, and electrical properties of single crystal and amorphous Bi2CuO4

G. A. Petrakovskii; K.A. Sablina; A.M Vorotinov; V.N Vasiliev; A.I Kruglik; A.D Balaev; D. A. Velikanov; N.I Kiselev

_3


Journal of Magnetism and Magnetic Materials | 2002

Spin-wave spectrum of copper metaborate in the commensurate phase 10 K<T<21 K

M. Boehm; S. Martynov; B. Roessli; G. A. Petrakovskii; J. Kulda

)


Journal of Experimental and Theoretical Physics | 1998

Magnetic and resonance properties of LiCu2O2 single crystals

A. M. Vorotynov; A. I. Pankrats; G. A. Petrakovskii; K. A. Sablina; W. Paszkowicz; H. Szymczak

_4


Crystallography Reports | 2000

Synthesis and magnetic properties of copper metaborate single crystals, CuB2O4

G. A. Petrakovskii; K. A. Sablina; D. A. Velikanov; A. M. Vorotynov; N. V. Volkov; A. F. Bovina

by means of a combination of single-crystal neutron diffraction and spherical neutron polarimetry. Our investigation did not detect significant deviations at low temperatures from space group R32 concerning the chemical structure. With respect to magnetic ordering our combined results demonstrate that in the commensurate magnetic phase below T


Physics of the Solid State | 2004

Electron transition in intercalated disulfide CuCrS2

G. M. Abramova; A. M. Vorotynov; G. A. Petrakovskii; N. I. Kiselev; D. A. Velikanov; A. F. Bovina; R. F. Al’mukhametov; R. A. Yakshibaev; É. V. Gabitov

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Dive into the G. A. Petrakovskii's collaboration.

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D. A. Velikanov

Russian Academy of Sciences

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A. M. Vorotynov

Russian Academy of Sciences

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A. F. Bovina

Russian Academy of Sciences

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G. M. Abramova

Krasnoyarsk State University

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K. A. Sablina

Russian Academy of Sciences

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N. V. Volkov

Russian Academy of Sciences

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O. A. Bayukov

Russian Academy of Sciences

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K.A. Sablina

Russian Academy of Sciences

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A. I. Pankrats

Russian Academy of Sciences

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