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      Decoherence Free Subspaces for Quantum Computation

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          Abstract

          Decoherence in quantum computers is formulated within the Semigroup approach. The error generators are identified with the generators of a Lie algebra. This allows for a comprehensive description which includes as a special case the frequently assumed spin-boson model. A generic condition is presented for error-less quantum computation: decoherence-free subspaces are spanned by those states which are annihilated by all the generators. It is shown that these subspaces are stable to perturbations and moreover, that universal quantum computation is possible within them.

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          Author and article information

          Journal
          1998-07-01
          1998-07-27
          Article
          10.1103/PhysRevLett.81.2594
          quant-ph/9807004
          764ebc91-8b8c-4658-b862-b5bc5fe93942
          History
          Custom metadata
          Phys.Rev.Lett.81:2594,1998
          4 pages, no figures. Conditions for decoherence-free subspaces made more explicit, updated references. To appear in PRL
          quant-ph math-ph math.MP

          Mathematical physics,Quantum physics & Field theory,Mathematical & Computational physics

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