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NbSe₂ 中涡旋核半径的低温极限与克莱默 - 佩施效应

Low temperature limit of the vortex core radius and the kramer-pesch effect in NbSe2.

作者信息

Miller RI, Kiefl RF, Brewer JH, Chakhalian J, Dunsiger S, Morris GD, Sonier JE, MacFarlane WA

机构信息

TRIUMF, 4004 Westbrook Mall, Vancouver, British Columbia V6T 2A3, Canada.

出版信息

Phys Rev Lett. 2000 Aug 14;85(7):1540-3. doi: 10.1103/PhysRevLett.85.1540.

Abstract

Muon spin rotation ( &mgr;SR) has been used to measure the magnetic field distribution in the vortex state of the type-II superconductor NbSe2 ( T(c) = 7.0 K) below T = 2 K. The distribution is consistent with a highly ordered hexagonal vortex lattice with a well resolved high-field cutoff associated with the finite size of the vortex cores. The temperature dependence of the core radius is much weaker than the temperature dependence predicted from the Bogoliubov-de Gennes theory. Furthermore, the vortex radius measured by &mgr;SR near the low temperature quantum limit is about an order of magnitude larger than predicted.

摘要

μ子自旋旋转(μSR)已被用于测量II型超导体NbSe2(Tc = 7.0 K)在T = 2 K以下的涡旋态中的磁场分布。该分布与高度有序的六角形涡旋晶格一致,具有与涡旋核有限尺寸相关的分辨良好的高场截止。涡旋核半径的温度依赖性比博戈留波夫-德热纳理论预测的温度依赖性弱得多。此外,在低温量子极限附近通过μSR测量的涡旋半径比预测值大约大一个数量级。

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