论文标题

Anderson在准二维无序超导体中的间隙数准颗粒过渡

Anderson transition of in-gap quasiparticles in a quasi-two-dimensional disordered superconductor

论文作者

Park, Hae-Ryong, Park, Kyung-Yong, Kim, Kyoung-Min, Kim, Jun-Sung, Yeom, Hanwoong, Kim, Ki-Seok, Lee, Jhinhwan

论文摘要

在过去的三十年中,在理论上研究了Bogoliubov-De Gennes(BDG)准粒子的Anderson过渡。但是,它的实验证明缺乏。特别是,尚未充分了解超导秩序参数波动与BDG准颗粒的安德森过渡的关系。我们的研究基于扫描隧道显微镜测量值,研究了BDG准粒子如何在基于Quasi-Two-Two-Two-Two-Two-Two-Two-Two-Two-two-two基于FE的超导体中的能量和应用磁场的函数,并具有足够的零偏置BDG BDG BDG bdg Quasiparticles。基于配对间隙和相干峰高的空间分布的异常多型光谱表明,超导波动在离域内BDG准粒子的离域中起着关键作用。 Our real-space Hartree-Fock-BCS-Anderson simulations and renormalization group analysis with pairing fluctuations support quasiparticle localization and suggest that enhanced pairing fluctuations lead to delocalization of BdG quasiparticles and "weak localization" of phase-fluctuating Cooper pairs in quasi-two-dimensional disordered superconductors.本研究提出,必须将10倍分类方案推广,以在实际量子物质中进行订单参数波动。同样,它阐明了如何在准2D超导体中控制费米水平的准粒子引起的交流能量损失,并有足够的配对波动。

The Anderson transition of Bogoliubov-de Gennes (BdG) quasiparticles in superconducting state has been studied theoretically for last three decades. However, its experimental proof is lacking. In particular, the relationship of the superconducting order-parameter fluctuations and the Anderson transition of BdG quasiparticles have not been well understood. Our study, based on scanning tunneling microscopy measurements, investigates how BdG quasiparticles become Anderson-localized and delocalized as a function of energy and applied magnetic field in a quasi-two-dimensional Fe-based superconductor with sufficient zero-bias BdG quasiparticles. The anomalous multifractal spectra based on the spatial distributions of the pairing gaps and the coherent peak heights suggest that superconducting fluctuations play a key role in the delocalization of in-gap BdG quasiparticles. Our real-space Hartree-Fock-BCS-Anderson simulations and renormalization group analysis with pairing fluctuations support quasiparticle localization and suggest that enhanced pairing fluctuations lead to delocalization of BdG quasiparticles and "weak localization" of phase-fluctuating Cooper pairs in quasi-two-dimensional disordered superconductors. The present study proposes that the 10-fold way classification scheme has to be generalized to take order-parameter fluctuations in actual quantum matter. Also, it shed light on how ac energy loss due to quasiparticles at Fermi level can be controlled in a quasi-2d superconductor with sufficient pairing fluctuation.

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