论文标题

部分可观测时空混沌系统的无模型预测

Investigation of the Pauli paramagnetic effect in systematically tuned NbN thin films

论文作者

Wang, Xiaoni, Wang, Lijie, Liu, Yixin, Gao, Wanpeng, Wu, Yu, Xu, Zulei, Jin, Hua, Zhang, Lu, Peng, Wei, Wang, Zhen, Li, Wei, Mu, Gang, Lin, Zhirong

论文摘要

可以在广泛的范围内调整NBN膜的超导性和正常状态特性,从而提供合适的平台来研究超导性能的系统演化。在此,我们报告了垂直($ b \ perp $胶片)和平行($ b \ parallel $胶片)方向的NBN膜的上部关键领域。研究了八个带有超导临界温度的样品$ T_C $从2.5 K到9.8 K。同时,正常状态电阻率通过改变膜增长的条件来调整超过六倍以上。发现在两个字段方向($ b_ {c2}^{\ perp} $和$ b_ {c2}^{\ parallel} $)超过pragaragnetic Limiting字段$ B_P $,发现上临界场的幅度($ b_ {c2}^{\ perp} $)。考虑到Pauli Spin Progaragnetism,扩展的werthamer-helfand-hohenberg(WHH)模型可以描述温度依赖于温度的$ b_ {c2}^{\ perp} $。同时,$ b_ {c2}^{\ Parallel} $ - $ t $数据显示了在$ t_c $附近的温度范围内的二维超导性的功能。讨论了带有其他参数获得的MAKI参数的演变,例如$ T_C $附近的上临界场的斜率和正常状态电阻率,以揭示该系统中Pauli Promagnetic效应的特征。

Superconductivity and the normal-state properties of NbN films can be tuned in a wide range, supplying a suitable platform to investigate the systematical evolution of the superconducting performances. Herein, we report the upper critical field of NbN films in both the vertical ($B\perp$ film) and parallel ($B\parallel$ film) orientations over a wide temperature range. Eight samples with the superconducting critical temperature $T_c$ ranging from 2.5 K to 9.8 K are studied. Meanwhile, the normal-state resistivity is tuned by more than six times by changing the conditions of the film growth. It is found that the magnitudes of the upper critical field in both field directions ($B_{c2}^{\perp}$ and $B_{c2}^{\parallel}$) exceed the paramagnetic limiting field $B_p$. The temperature dependent $B_{c2}^{\perp}$ can be described by the extended Werthamer--Helfand--Hohenberg (WHH) model considering the Pauli spin paramagnetism. Meanwhile, the $B_{c2}^{\parallel}$-$T$ data shows the feature of two-dimensional superconductivity in the temperature range near $T_c$. The evolution of the obtained Maki parameter with other parameters, such as the slope of the upper critical field near $T_c$ and the normal-state resistivity, are discussed to reveal the characteristics of the Pauli paramagnetic effect in this system.

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