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1-14 of 14
K. G. Dergachev
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Journal Articles
Low-temperature magnetic phase transition in aluminum borate TbAl3(BO3)4
Available to PurchaseV. A. Bedarev, M. I. Paschenko, M. I. Kobets, K. G. Dergachev, E. N. Khatsko, S. L. Gnatchenko, A. A. Zvyagin, T. Zajarniuk, A. Szewczyk, M. U. Gutowska, L. N. Bezmaternykh, V. L. Temerov
Journal:
Low Temperature Physics
Low Temp. Phys. 41, 534–536 (2015)
Published: July 2015
Journal Articles
Magnetic resonance and spin-reorientation transitions in the Nd0.75Ho0.25Fe3(BO3)4 multiferroic
Available to Purchase
Journal:
Low Temperature Physics
Low Temp. Phys. 41, 75–79 (2015)
Published: January 2015
Journal Articles
Antiferromagnetic resonance study of the magnetic structure of Nd0.75Dy0.25Fe3(BO3)4
Available to Purchase
Journal:
Low Temperature Physics
Low Temp. Phys. 40, 629–634 (2014)
Published: July 2014
Journal Articles
Magnetoresonance properties of antiferromagnetic TbFe3(BO3)4 at low temperatures
Available to PurchaseV. A. Bedarev, M. I. Paschenko, M. I. Kobets, K. G. Dergachev, V. A. Paschenko, A. N. Bludov, E. N. Khatsko, S. L. Gnatchenko, L. N. Bezmaternykh, V. L. Temerov
Journal:
Low Temperature Physics
Low Temp. Phys. 39, 167–171 (2013)
Published: February 2013
Journal Articles
Electronic paramagnetic resonance or rare-earth ions Yb 3 + , Pr 3 + , Dy 3 + , and Nd 3 + in double molybdates and tungstenates
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Journal:
Low Temperature Physics
Low Temp. Phys. 36, 611–617 (2010)
Published: July 2010
Journal Articles
EPR in the molecular magnet { Cu 6 [ ( Me Si O 2 ) 6 ] 2 } ⋅ 6 DMF
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Journal:
Low Temperature Physics
Low Temp. Phys. 36, 290–295 (2010)
Published: April 2010
Journal Articles
Microwave absorption in the frustrated ferrimagnet Cu 2 O Se O 3
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Journal:
Low Temperature Physics
Low Temp. Phys. 36, 176–179 (2010)
Published: February 2010
Journal Articles
Antiferromagnetic resonance in Mn 2 P 2 S 6
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Journal:
Low Temperature Physics
Low Temp. Phys. 35, 930–934 (2009)
Published: December 2009
Journal Articles
Spin dynamics and magnetic phase transitions in the quasi-two-dimensional antiferromagnet Mn [ C 10 H 6 ( OH ) ( COO − ) ] 2 × 2 H 2 O
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Journal:
Low Temperature Physics
Low Temp. Phys. 33, 427–432 (2007)
Published: May 2007
Journal Articles
Magnetic and resonance properties of the compound ( NH 3 ) 2 ( CH 2 ) 3 CoCl 4 —an antiferromagnet with the Dzyaloshinskii interaction
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Journal:
Low Temperature Physics
Low Temp. Phys. 32, 936–941 (2006)
Published: October 2006
Journal Articles
Magnetic resonance properties of the low-dimensional antiferromagnet Mn [ C 10 H 6 ( OH ) ( COO − ) ] 2 ∙ 2 H 2 O
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Journal:
Low Temperature Physics
Low Temp. Phys. 32, 228–235 (2006)
Published: March 2006
Journal Articles
Electron paramagnetic resonance study of the singlet magnet K Tb ( W O 4 ) 2
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Journal:
Low Temperature Physics
Low Temp. Phys. 31, 862–871 (2005)
Published: October 2005
Journal Articles
Magnetic resonance studies of the low-dimensional magnet NaFe ( WO 4 ) 2
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Journal:
Low Temperature Physics
Low Temp. Phys. 31, 402–405 (2005)
Published: May 2005
Journal Articles
Resonance properties of the quasi-one-dimensional Ising magnet [( CH 3 ) 3 NH ] CoCl 3 ⋅2 H 2 O in the paramagnetic and magnetically ordered phases
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Journal:
Low Temperature Physics
Low Temp. Phys. 28, 889–895 (2002)
Published: December 2002