Voltage Induced by Superconducting Vortices in Open Nanostructured Microtubes

Voltage Induced by Superconducting Vortices in Open Nanostructured Microtubes
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开放纳米结构微管中超导涡旋感应的电压

DOI:
10.1002/pssr.201800251
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发表时间:
2019
期刊:
physica status solidi (RRL) – Rapid Research Letters
影响因子:
--
通讯作者:
V. M. Fomin
V. M. Fomin
中科院分区:
--
文献类型:
--
作者:
R. O. Rezaev;E. A. Posenitskiy;E. I. Smirnova;E. A. Levchenko;O. G. Schmidt;V. M. Fomin

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利用时域有限差分模拟,分析了运动涡流诱导的电压随输运电流和磁场的变化规律。与平面结构相比,开放超导体管在相同的磁场和输运电流下产生更小的耗散。感应电压作为磁场的函数提供了有关涡旋模式的信息。特别是,涡流链数量的增加导致感应电压的斜率作为磁场的线性函数降低了六倍。
Using the finite‐difference time‐domain simulation, voltage induced by moving vortices as a function of the transport current and magnetic field is analyzed for rolled up nanostructured microtubes. Open superconductor tubes are shown to produce less dissipation as compared to the planar structures under the same magnetic field and transport current. The induced voltage as a function of the magnetic field provides information about the vortex pattern. In particular, an increase of the number of vortex chains in the tube results in a sixfold decrease of a slope of the induced voltage as a linear function of the magnetic field.
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