Prime number factorization using a spinor Bose–Einstein condensate-inspired topological quantum computer
Inspired by non-abelian vortex anyons in spinor Bose–Einstein condensates, we consider the quantum double D ( Q 8 ) anyon model as a platform to carry out a particular instance of Shor’s factorization algorithm. We suggest that the D ( Q 8 ) anyon model could be realized by a specific low-temperatur...
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Veröffentlicht in: | Quantum information processing 2022, Vol.21 (1), Article 31 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Inspired by non-abelian vortex anyons in spinor Bose–Einstein condensates, we consider the quantum double
D
(
Q
8
)
anyon model as a platform to carry out a particular instance of Shor’s factorization algorithm. We suggest that the
D
(
Q
8
)
anyon model could be realized by a specific low-temperature phase of a spin-2 Bose–Einstein condensate. We provide the excitation spectrum for this model, as well as the fusion rules, braid group representations, and a circuit architecture that facilitates the computation. All necessary quantum gates, less one, can be compiled exactly for this hybrid topological quantum computer. The required non-topological gate could be implemented using measurement based protocols. To analyze the effect of decoherence on the non-topological gate, a noise model based on stochastic unitary rotations is considered. The computational potential of this quantum double anyon model is similar to that of the Majorana fermion-based Ising anyon model, thus offering a complementary future platform for topological quantum computation. |
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ISSN: | 1570-0755 1573-1332 |
DOI: | 10.1007/s11128-021-03366-9 |