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在超导电路中用马约拉纳模式对量子比特进行编码。

Encoding a qubit with Majorana modes in superconducting circuits.

作者信息

You J Q, Wang Z D, Zhang Wenxian, Nori Franco

机构信息

1] Beijing Computational Science Research Center, Beijing 100084, China [2] Center for Emergent Matter Science, RIKEN, Wako-shi 351-0198, Japan.

Department of Physics and Center of Theoretical and Computational Physics, The University of Hong Kong, Pokfulam Road, Hong Kong, China.

出版信息

Sci Rep. 2014 Jul 2;4:5535. doi: 10.1038/srep05535.

Abstract

Majorana fermions are long-sought exotic particles that are their own antiparticles. Here we propose to utilize superconducting circuits to construct two superconducting-qubit arrays where Majorana modes can occur. A so-called Majorana qubit is encoded by using the unpaired Majorana modes, which emerge at the left and right ends of the chain in the Majorana-fermion representation. We also show this Majorana qubit in the spin representation and its advantage, over a single superconducting qubit, regarding quantum coherence. Moreover, we propose to use four superconducting qubits as the smallest system to demonstrate the braiding of Majorana modes and show how the states before and after braiding Majoranas can be discriminated.

摘要

马约拉纳费米子是长期以来一直寻找的奇异粒子,它们自身就是反粒子。在此,我们提议利用超导电路构建两个可能出现马约拉纳模式的超导量子比特阵列。一种所谓的马约拉纳量子比特是通过使用未配对的马约拉纳模式进行编码的,这些模式在马约拉纳费米子表示中出现在链的左端和右端。我们还展示了自旋表示下的这种马约拉纳量子比特及其相较于单个超导量子比特在量子相干方面的优势。此外,我们提议使用四个超导量子比特作为最小系统来演示马约拉纳模式的编织,并展示如何区分马约拉纳模式编织前后的状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d75/4078313/2332446dbc13/srep05535-f1.jpg

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