与马约拉纳线耦合的安德烈耶夫分子的光谱和传输特性

IF 2.2 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Grzegorz Górski, Krzysztof Kucab
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引用次数: 0

摘要

本文研究了沉积在超导衬底(安德烈耶夫分子)上并与承载马约拉纳零模(MZMs)的纳米线侧耦合的双量子点(DQD)的准粒子谱和传输特性。将 DQD 放置在超导衬底上会在量子点中诱导出微不足道的安德烈耶夫束缚态 (ABS)。然而,DQD 与纳米线的耦合会导致 MZM 从拓扑纳米线泄漏到量子点中。本文分析了不同耦合参数值下安德烈耶夫态与马约拉纳模式之间的关系。此外,研究还表明,作为扫描隧道显微镜(STM)尖端的金属尖端的连接点会影响差分电导的测量结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spectral and Transport Properties of Andreev Molecule Coupled to Majorana Wire

Spectral and Transport Properties of Andreev Molecule Coupled to Majorana Wire

Spectral and Transport Properties of Andreev Molecule Coupled to Majorana Wire

The quasiparticle spectrum and transport properties of the double quantum dot (DQD) deposited on a superconducting substrate (Andreev molecule) and side-coupled to a nanowire hosting Majorana zero modes (MZMs) are studied. Placing a DQD on the superconducting substrate induces the trivial Andreev-bound states (ABSs) in quantum dots. However, coupling of DQD with a nanowire causes the leakage of the MZM from the topological nanowire into quantum dots. The relationship between the Andreev states and the Majorana mode for different values of the coupling parameters is analyzed. Additionally, it is shown that the connection point of a metallic tip, treated as an scanning tunneling microscope (STM) tip, affects the measured results of the differential conductance.

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来源期刊
Annalen der Physik
Annalen der Physik 物理-物理:综合
CiteScore
4.50
自引率
8.30%
发文量
202
审稿时长
3 months
期刊介绍: Annalen der Physik (AdP) is one of the world''s most renowned physics journals with an over 225 years'' tradition of excellence. Based on the fame of seminal papers by Einstein, Planck and many others, the journal is now tuned towards today''s most exciting findings including the annual Nobel Lectures. AdP comprises all areas of physics, with particular emphasis on important, significant and highly relevant results. Topics range from fundamental research to forefront applications including dynamic and interdisciplinary fields. The journal covers theory, simulation and experiment, e.g., but not exclusively, in condensed matter, quantum physics, photonics, materials physics, high energy, gravitation and astrophysics. It welcomes Rapid Research Letters, Original Papers, Review and Feature Articles.
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