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Kondo screening cloud in a superconductor with mixed s-wave and p-wave pairing states

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摘要 We study the Kondo screening of a spin-1/2 magnetic impurity coupled to a superconductor,which is fabricated by combination of an s-wave superconductor,a ferromagnet and a semiconductor with Rashba spin-orbit coupling(RSOC).The proximity induced superconducting states include the s-wave and p-wave pairing components with the aids of RSOC,and the ferromagnet induces a Zeeman field which removes the spin degeneracy of the quasiparticles in the triplet states.Thus,the Kondo screening of magnetic impurity involves the orbital degrees of freedom,and is also affected by the Zeeman field.Using the variational method,we calculate the binding energy and the spin-spin correlation between the magnetic impurity and the electrons in the coexisting s-wave and p-wave pairing states.We find that Kondo singlet forms more easily with stronger RSOC,but Zeeman field in general decreases the binding energy.The spin-spin correlation decays fast in the vicinity of the magnetic impurity.Due to the RSOC,the spatial spin-spin correlation becomes highly anisotropic,and the Zeeman field can induce extra asymmetry to the off-diagonal components of the spin-spin correlation.Our study can offer some insights into the studies of extrinsic topological superconductors fabricated from the hybrid structures containing chains of magnetic impurities.
作者 黄真真 彭雄涛 王万胜 孙金华 Zhen-Zhen Huang;Xiong-Tao Peng;Wan-Sheng Wang;Jin-Hua Sun(School of Physical Science and Technology,Ningbo University,Ningbo 315211,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第10期478-487,共10页 中国物理B(英文版)
基金 Project supported by the Zhejiang Provincial Natural Science Foundation of China(Grant No.LY19A040003)。
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