paper

Josephson Plasma Resonance in Solid and Glass Phases of BiSrCaCuO

arXiv:cond-mat/0009414 · doi:10.1016/S0921-4534(01)00677-3

Abstract

Vortex matter phases and phase transitions are investigated by means of Josephson plasma resonance in under-doped BiSrCaCuO single crystals in a microwave frequency range between 19 and 70 GHz. Accompanied by the vortex lattice melting transition, a jump of the interlayer phase coherence extracted from the field dependence of the plasma frequency was observed. In the solid phase, the interlayer coherence little depends on field at a temperature region well below while it gradually decreases as field increases toward the melting line up to just below . As a result, the magnitude of the jump decreases with increasing temperature and is gradually lost in the vicinity of . This indicates that the vortex lines formed in the vortex solid phase are thermally meandering and the phase transition becomes weak especially just below .

5pages and 4 figures. Submitted to Physica C (Proceedings of Plasma2000, Sendai)