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Herbsommer, J. A., J. Luzuriaga, and S. - W. Cheong. "Vortex glass melting in single crystal La1.825 Sr0.075CuO4."
Physica C
258, no. 1-2 (1996): 169–174.
Abstract:
The vortex phase diagram in single crystalline La1.85Sr0.075CuO4 has been studied using an AC-susceptibility technique. A peak in the out-of-phase (x?) component of the susceptibility indicates a transition from a pinned flux lattice (FLL) to an unpinned one. This peak is frequency dependent for all the values of the magnetic field measured (0.01 to 4 T), and this, as well as the general behavior found in the cuprates, has prompted us to interpret our data as evidence for a vortex-glass to liquid transition in the FLL. The activation energies obtained can be fitted to a theory developed by Vinokur et al. Measurements with the magnetic field at an angle with the Cu-O planes may also be understood qualitatively within this framework.
Keywords:
Copper compounds
;
Crystal lattices
;
Frequency response
;
Glass
;
Magnetic field measurement
;
Magnetic permeability measurement
;
Melting
;
Phase diagrams
;
Single crystals
;
Temperature
;
Vortex flow
;
AC susceptibility
;
Cuprates
;
Pinned flux lattice
;
Oxide superconductors
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Oh, Y. S., B. Jeon, S. Y. Haam, S. Park, V. F. Correa, A. H. Lacerda, S. - W. Cheong, G. S. Jeon, and K. H. Kim. "Strong magnetoelastic effect on the magnetoelectric phenomena of TbMn2O5."
Physical Review B
83 (2011): 060405.
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