Quench Dynamics in Interacting and Superconducting Nanojunctions

Quench Dynamics in Interacting and Superconducting Nanojunctions
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相互作用和超导纳米结中的淬灭动力学

DOI:
10.1007/978-3-030-36595-0
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发表时间:
2020
期刊:
Springer Theses
影响因子:
--
通讯作者:
R. Souto
R. Souto
中科院分区:
--
文献类型:
--
作者:
R. Souto

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多体相互作用和超导相关性的影响已成为量子传输界的中心问题。虽然大多数先前研究纳米器件电流波动的工作都仅限于静止状态,但 Seoane 的论文将这些研究扩展到了时域。它提供了有关由相互作用和超导性介导的电子关联的时间开始的相关信息。这些知识对于开发快速电子设备以及需要快速操作的新颖应用(例如量子信息处理)至关重要。此外,论文还与当前广泛关注的问题(例如非平衡量子相变)建立了联系。 (较少的)
Effects of many-body interactions and superconducting correlations have become central questions in the quantum transport community. While most previous works investigating current fluctuations in nanodevices have been restricted to the stationary regime, Seoane's thesis extends these studies to the time domain. It provides relevant information about the time onset of electronic correlations mediated by interactions and superconductivity. This knowledge is essential for the development of fast electronic devices, as well as novel applications requiring fast manipulations, such as quantum information processing. In addition, the thesis establishes contact with issues of broad current interest such as non-equilibrium quantum phase transitions. (Less)