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- W2887380041 abstract "The realization of topological quantum phases of matter remains a key challenge to condensed matter physics and quantum information science. In this work, we demonstrate that progress in this direction can be made by combining concepts of tensor network theory with Majorana device technology. Considering the topological double semion string-net phase as an example, we exploit the fact that the representation of topological phases by tensor networks can be significantly simpler than their description by lattice Hamiltonians. The building blocks defining the tensor network are tailored to realization via simple units of capacitively coupled Majorana bound states. In the case under consideration, this yields a remarkably simple blueprint of a synthetic double semion string-net, and one may be optimistic that the required device technology will be available soon. Our results indicate that the implementation of tensor network structures via mesoscopic quantum devices opens up a powerful novel avenue toward the realization and quantum simulation of synthetic topological quantum matter." @default.
- W2887380041 created "2018-08-22" @default.
- W2887380041 creator A5000791603 @default.
- W2887380041 creator A5039061889 @default.
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- W2887380041 creator A5069681436 @default.
- W2887380041 date "2019-03-14" @default.
- W2887380041 modified "2023-10-14" @default.
- W2887380041 title "Simulating topological tensor networks with Majorana qubits" @default.
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- W2887380041 doi "https://doi.org/10.1103/physrevb.99.115117" @default.
- W2887380041 hasPublicationYear "2019" @default.
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