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超导体上多体分子自旋诱导的耦合汤川-芝-吕西诺夫态

Coupled Yu-Shiba-Rusinov States Induced by a Many-Body Molecular Spin on a Superconductor.

作者信息

Rubio-Verdú Carmen, Zaldívar Javier, Žitko Rok, Pascual Jose Ignacio

机构信息

CIC nanoGUNE-BRTA, 20018 Donostia-San Sebastián, Spain.

Department of Physics, Columbia University, New York, New York 10027, United States.

出版信息

Phys Rev Lett. 2021 Jan 8;126(1):017001. doi: 10.1103/PhysRevLett.126.017001.

Abstract

A magnetic impurity on a superconductor induces Yu-Shiba-Rusinov (YSR) bound states, detected by tunneling spectroscopy as long-lived quasiparticle excitations inside the superconducting gap. Coupled YSR states constitute basic elements to engineer artificial superconducting states, but their substrate-mediated interactions are generally weak. In this Letter, we report that intramolecular (Hund's-like) exchange interactions produce coupled YSR states across a molecular platform. We measured YSR spectra along a magnetic iron-porphyrin on Pb(111) and found evidence of two distinct interaction channels, which invert their particle-hole asymmetry across the molecule. Numerical calculations show that the identical YSR asymmetry pattern of the two channels is caused by two spin-hosting orbitals with opposite potential scattering and coupled strongly. Both channels can be similarly excited by tunneling electrons into each orbital, depicting a new scenario for entangled superconducting bound states using molecular platforms.

摘要

超导体上的磁性杂质会诱导产生汤川-芝-芦西诺夫(YSR)束缚态,通过隧道光谱法可检测到这些束缚态,它们是超导能隙内的长寿命准粒子激发。耦合的YSR态是构建人工超导态的基本元素,但其通过衬底介导的相互作用通常较弱。在本信函中,我们报告分子内(类洪德)交换相互作用会在分子平台上产生耦合的YSR态。我们沿着Pb(111)上的磁性铁卟啉测量了YSR光谱,发现了两个不同相互作用通道的证据,这两个通道在分子上的粒子-空穴不对称性相反。数值计算表明,这两个通道相同的YSR不对称模式是由两个具有相反势散射且强耦合的自旋承载轨道引起的。两个通道都可以通过隧穿电子进入每个轨道而被类似地激发,描绘了一种利用分子平台实现纠缠超导束缚态的新情况。

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