外电磁辐射对超导钽薄膜异常金属行为的影响

Junghyun Shin, Sun-gyu Park, Eunseong Kim
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引用次数: 1

摘要

研究了三种结构的超导Ta薄膜在射频辐射滤波器中的输运特性;无过滤器,只有室温过滤器,除室温过滤器外还有低温过滤器。在过渡温度附近的传输特性强烈依赖于是否安装了室温过滤器。整个过渡被转移到更高的温度与加载层的室温过滤器。一旦在B=0时达到零电阻状态,即使安装了低温过滤器,也不会观察到强烈的辐射效应。当磁场打开时,在没有低温滤波器的情况下显示出低温下的非零电阻饱和,这被认为是磁场诱导的量子金属相。然而,插入额外的低温滤波器削弱了电阻的饱和,这是金属行为的特征。这一观察结果表明,先前报道的Ta薄膜中的异常金属态主要是由未过滤的辐射引起的,因此,如果存在,则本征金属基态应限制在临界点附近的狭窄磁场范围内。
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Effect of external electromagnetic radiation on the anomalous metallic behavior in superconducting Ta thin films
We investigated transport characteristics of superconducting Ta thin films with three configurations in rf radiation filters; no filter, only room-temperature filters, and low-temperature filters in addition to room-temperature filters. The transport properties near the transition temperature are strongly dependent on whether the room-temperature filter is installed or not. The entire transition is shifted to higher temperature with loading layers of the room-temperature filters. Once the zero-resistance state is achieved at B=0, no strong radiation effect is observed even with low-temperature filters installed. When magnetic field is turned on, the nonzero-resistance saturation at low temperatures is revealed without low-temperature filters, which has been considered to be magnetic-field-induced quantum metallic phase. However, the insertion of the additional low-temperature filter weakens the saturation of the resistance, the signature of the metallic behavior. This observation suggests that the previously reported anomalous metallic state in Ta films is mainly induced by the unfiltered radiation and, thus, the intrinsic metallic ground state should be limited to the narrow range of magnetic fields near the critical point, if exists.
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