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中国物理学会期刊

YBCO颗粒膜的非平衡微波响应与Koterlitz-Thouless相变

CSTR: 32037.14.aps.48.1152

NONEQUILIBRIUM MICROWAVE RESPONSE AND KOSTERLITZ-THOULESS TRANSITION IN YBCO GRANULAR FILMS

CSTR: 32037.14.aps.48.1152
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  • 报道了Yba2Cu3O7-δ(YBCO)颗粒膜的微波辐射(λ=8mm)响应的特征.实验结果表明:YBCO颗粒膜的微波响应行为不能用辐射热效应来描述,而应当属于非平衡响应行为.在超导转变温度T∞以下温区,非平衡微波响应信号电平随样品电阻R趋于零而消失,并且对弱的外磁场十分灵敏.在对样品的直流I-V特性进行了仔细测量后发现,样品的电输运行为具有准二维结构特征,可以用Kosterlitz-Thouless(K-T)相变模型加以描述.在此基础上,分析结果表明:YBCO颗粒膜中的非平衡微波响应机制可能与磁通“涡旋-反涡旋”束缚对的激发态有关.

     

    The characteristic of microwave radiation (λ=8mm) response of YBCO granular films was reported. Experimental results show that the response behavior can be described with nonequilibrium response effect, instead of thermal effect model. Near below the transition temperature T∞, nonequilibrium microwave response signal decays gradually and disappears with the sample resistance becoming zero. It was also found that the response signal is very sensitive to a weak magnetic field. The sample I-V curve was studied carefully, and the Kosterlitz-Thouless transition model can be used to describe the two-dimensional transport characteristic of the YBCO granular films. Based on the analysis and experimental results, we believe that the mechanism of nonequilibrium microwave response may be related with the breaking of the votex-antivotex pair in high Tc superconductor.

     

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