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Published March 2010 | public
Journal Article

Simplifying quantum double Hamiltonians using perturbative gadgets

König, Robert

Abstract

Perturbative gadgets were originally introduced to generate effective k-local interactions in the low-energy sector of a 2-local Hamiltonian. Extending this idea, we present gadgets which are specifically suited for realizing Hamiltonians exhibiting non-abelian anyonic excitations. At the core of our construction is a perturbative analysis of a widely used hopping-term Hamiltonian. We show that in the low-energy limit, this Hamiltonian can be approximated by a certain ordered product of operators. In particular, this provides a simplified realization of Kitaev's quantum double Hamiltonians.

Additional Information

© 2010 Rinton Press. Received May 13, 2009. Revised November 11, 2009. Communicated by: I. Cirac & M. Mosca. I thank Stephen Jordan, Alexei Kitaev, David Poulin and John Preskill for discussions, Ben Reichardt for comments on an earlier draft, and Todd Brun for suggesting to use energy penalties between different clocks. I also thank the anonymous referees for their suggestions. Support by NSF Grants PHY-0456720, PHY-0803371 and SNF PA00P2-126220 is gratefully acknowledged.

Additional details

Created:
August 19, 2023
Modified:
October 20, 2023