Majorana bound states in a driven quantum dot

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY The European Physical Journal Plus Pub Date : 2023-08-10 DOI:10.1140/epjp/s13360-023-04326-1
Fabián Medina-Cuy, Dunkan Martínez, Francisco Domínguez-Adame, P. A. Orellana
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引用次数: 1

Abstract

We study a periodically driven quantum dot in two different configurations. In the first setup, a quantum dot coupled to a topological superconductor and a normal metal lead. In the second setup, a T-shape quantum dot connected to two topological superconductors and side coupled to a normal metal lead. By a combination of non-equilibrium Green’s function techniques and Floquet’s formalism, we obtain the quasienergy spectra as a function of the amplitude, frequency, and superconducting phase difference. We show that the states develop unique electronic responses, such as the broken particle-hole symmetry that appears when considering the non-locality of Majorana bound states. Finally, we compute the time-average current and the differential conductance to reveal these spectra signatures through physically measurable magnitudes in the two proposed configurations.

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驱动量子点中的马约拉纳束缚态
我们研究了两种不同结构下的周期性驱动量子点。在第一个装置中,量子点与拓扑超导体和普通金属引线耦合。在第二种设置中,一个t形量子点连接到两个拓扑超导体上,并侧面耦合到普通金属引线上。通过结合非平衡格林函数技术和Floquet的形式化,我们得到了准能谱作为振幅、频率和超导相位差的函数。我们证明了这些状态会产生独特的电子响应,例如在考虑马约拉纳束缚态的非局域性时出现的破缺粒子-空穴对称性。最后,我们计算了时间平均电流和差分电导,通过物理可测量的幅度来揭示这些光谱特征。
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来源期刊
The European Physical Journal Plus
The European Physical Journal Plus PHYSICS, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
8.80%
发文量
1150
审稿时长
4-8 weeks
期刊介绍: The aims of this peer-reviewed online journal are to distribute and archive all relevant material required to document, assess, validate and reconstruct in detail the body of knowledge in the physical and related sciences. The scope of EPJ Plus encompasses a broad landscape of fields and disciplines in the physical and related sciences - such as covered by the topical EPJ journals and with the explicit addition of geophysics, astrophysics, general relativity and cosmology, mathematical and quantum physics, classical and fluid mechanics, accelerator and medical physics, as well as physics techniques applied to any other topics, including energy, environment and cultural heritage.
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