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Vortex pinning and J_c in high-T_c superconductors: advance form understanding toward some practical issues

机译:高T_c超导体中的涡旋钉扎和J_c:对一些实际问题进行形式理解

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IN teraction of vortex line lattice (VLL) in HTSC with crystal defects of various dimensionality dramatically affects quasi-static and dynamic behavior of vortices and J_c. Two kinds of ~quenched" VLL disorder are shown to contribute into anisotropic behavior of J_c and M_(irr) in HTSC single crystals: (i) random point-like defects-oxgen vacancies which serve as a weak but numerous pins, dominating by J_c (H, #theta# )-behavior on a background of strong collective vortex-vortex intefaction; (ii) extended defects (linear or planar), playing dramatic role in pinning if magnetic field is parallel (or inclined within a lock-in angle) to their direction. A dimensional crossover (DCO) 2D reversible 3D between states of VLL, having the disorder of different dimensionality, suggests to be responsible for anomalies in field and angular dependencies J_c, M_(irr) and F_p for perfect HTSC single crystals, i.e., for the "second peak of magnetization" -one of the most disputable feature of ovrtex matter.
机译:HTSC中的涡旋线阵(VLL)与各种尺寸的晶体缺陷的相互作用极大地影响了涡旋和J_c的准静态和动态行为。在HTSC单晶中,两种“淬灭”的VLL紊乱会导致J_c和M_(irr)的各向异性行为:(i)随机点状缺陷-氧空位起着弱但无数的作用,由J_c主导(H,#theta#)-在强烈的集体涡旋-涡旋相互作用的背景下的行为;(ii)扩展缺陷(线性或平面),如果磁场平行(或在<<锁内倾斜)在钉扎中起着戏剧性的作用VLL状态之间的维数转换(DCO)2D可逆3D,具有不同维数的紊乱,表明是场和角度依赖性J_c,M_(irr)和F_p异常的原因完美的HTSC单晶,即“磁化的第二个峰值”-卵质最有争议的特征之一。

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