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Sigma models on quantum computers

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arxiv 1903.06577 v2 pith:SRDV2WI3 submitted 2019-03-15 hep-lat cond-mat.str-elnucl-thphysics.comp-phquant-ph

Sigma models on quantum computers

classification hep-lat cond-mat.str-elnucl-thphysics.comp-phquant-ph
keywords spacespherecomputersconstructioncontinuumdeltadiscretizationdiscretizations
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We formulate a discretization of sigma models suitable for simulation by quantum computers. Space is substituted by a lattice, as usually done in lattice field theory, while the target space (a sphere) is replaced by the "fuzzy sphere", a construction well known from non-commutative geometry. Contrary to more naive discretizations of the sphere, in this construction the exact $O(3)$ symmetry is maintained, which suggests that the discretized model is in the same universality class as the continuum model. That would allow for continuum results to be obtained for very rough discretizations of the target space as long as the space discretization is made fine enough. The cost of performing time-evolution, measured as the number of CNOT operations necessary, is $12 L T/\Delta t $, where $L$ is the number of spatial sites, $T$ the maximum time extent and $\Delta t$ the time spacing.

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