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无环超导网络中的量子相干性。

Quantum Coherence in Loopless Superconductive Networks.

作者信息

Lucci Massimiliano, Campanari Valerio, Cassi Davide, Merlo Vittorio, Romeo Francesco, Salina Gaetano, Cirillo Matteo

机构信息

Dipartimento di Fisica and MINAS Lab, Università di Roma "Tor Vergata", 00133 Roma, Italy.

Dipartimento di Elettronica, Università di Roma "Tor Vergata", 00133 Roma, Italy.

出版信息

Entropy (Basel). 2022 Nov 18;24(11):1690. doi: 10.3390/e24111690.

Abstract

Measurements indicating that planar networks of superconductive islands connected by Josephson junctions display long-range quantum coherence are reported. The networks consist of superconducting islands connected by Josephson junctions and have a tree-like topological structure containing no loops. Enhancements of superconductive gaps over specific branches of the networks and sharp increases in pair currents are the main signatures of the coherent states. In order to unambiguously attribute the observed effects to branches being embedded in the networks, comparisons with geometrically equivalent-but isolated-counterparts are reported. Tuning the Josephson coupling energy by an external magnetic field generates increases in the Josephson currents, along the above-mentioned specific branches, which follow a functional dependence typical of phase transitions. Results are presented for double comb and star geometry networks, and in both cases, the observed effects provide positive quantitative evidence of the predictions of existing theoretical models.

摘要

据报道,测量结果表明,由约瑟夫森结连接的超导岛平面网络呈现出长程量子相干性。这些网络由通过约瑟夫森结连接的超导岛组成,具有不含回路的树状拓扑结构。超导能隙在网络特定分支上的增强以及对电流的急剧增加是相干态的主要特征。为了明确将观测到的效应归因于嵌入网络中的分支,本文报道了与几何等效但孤立的对应物的比较。通过外部磁场调节约瑟夫森耦合能量会使沿着上述特定分支的约瑟夫森电流增加,这遵循典型的相变函数依赖性。本文给出了双梳状和星状几何网络的结果,在这两种情况下,观测到的效应都为现有理论模型的预测提供了积极的定量证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47ed/9688951/a6df7a0ba522/entropy-24-01690-g001.jpg

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