Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution

Abstract A quantum computer based on Majorana qubits would contain a large number of zero-energy Majorana states. This system can be modelled as a connected network of the Ising-Kitaev chains alternating the “trivial” and “topological” regions, with the zero-energy Majorana fermions localized at the...

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Autor principal: Boris Narozhny
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/20c69fd5a14348bf88d176ebb91800f7
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spelling oai:doaj.org-article:20c69fd5a14348bf88d176ebb91800f72021-12-02T16:06:56ZMajorana fermions in the nonuniform Ising-Kitaev chain: exact solution10.1038/s41598-017-01413-z2045-2322https://doaj.org/article/20c69fd5a14348bf88d176ebb91800f72017-05-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-01413-zhttps://doaj.org/toc/2045-2322Abstract A quantum computer based on Majorana qubits would contain a large number of zero-energy Majorana states. This system can be modelled as a connected network of the Ising-Kitaev chains alternating the “trivial” and “topological” regions, with the zero-energy Majorana fermions localized at their interfaces. The low-energy sector of the theory describing such a network can be formulated in terms of leading-order couplings between the Majorana zero modes. I consider a minimal model exhibiting effective couplings between four Majorana zero modes – the nonuniform Ising-Kitaev chain, containing two “topological” regions separated by a “trivial” region. Solving the model exactly, I show that for generic values of the model parameters the four zero modes are localized at the four interface points of the chain. In the special case where additional inversion symmetry is present, the Majorana zero modes are “delocalized” between two interface points. In both cases, the low-energy sector of the theory can be formulated in terms of the localized Majorana fermions, but the couplings between some of them are independent of their respective separations: the exact solution does not support the “nearest-neighbor” form of the effective low-energy Hamiltonian.Boris NarozhnyNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-14 (2017)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Boris Narozhny
Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution
description Abstract A quantum computer based on Majorana qubits would contain a large number of zero-energy Majorana states. This system can be modelled as a connected network of the Ising-Kitaev chains alternating the “trivial” and “topological” regions, with the zero-energy Majorana fermions localized at their interfaces. The low-energy sector of the theory describing such a network can be formulated in terms of leading-order couplings between the Majorana zero modes. I consider a minimal model exhibiting effective couplings between four Majorana zero modes – the nonuniform Ising-Kitaev chain, containing two “topological” regions separated by a “trivial” region. Solving the model exactly, I show that for generic values of the model parameters the four zero modes are localized at the four interface points of the chain. In the special case where additional inversion symmetry is present, the Majorana zero modes are “delocalized” between two interface points. In both cases, the low-energy sector of the theory can be formulated in terms of the localized Majorana fermions, but the couplings between some of them are independent of their respective separations: the exact solution does not support the “nearest-neighbor” form of the effective low-energy Hamiltonian.
format article
author Boris Narozhny
author_facet Boris Narozhny
author_sort Boris Narozhny
title Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution
title_short Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution
title_full Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution
title_fullStr Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution
title_full_unstemmed Majorana fermions in the nonuniform Ising-Kitaev chain: exact solution
title_sort majorana fermions in the nonuniform ising-kitaev chain: exact solution
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/20c69fd5a14348bf88d176ebb91800f7
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