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Towards universal quantum computation through relativistic motion

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arxiv 1311.5619 v3 pith:2S7WUCHP submitted 2013-11-21 quant-ph cond-mat.mes-hallgr-qc

classification quant-phcond-mat.mes-hallgr-qc
keywords clustercomputationquantumrelativisticuniversalmotionresultsstates
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We show how to use relativistic motion and local phase shifts to generate continuous variable Gaussian cluster states within cavity modes. Our results can be demonstrated experimentally using superconducting circuits where tuneable boundary conditions correspond to mirrors moving with velocities close to the speed of light. In particular, we propose the generation of a quadripartite square cluster state as a first example that can be readily implemented in the laboratory. Since cluster states are universal resources for universal one-way quantum computation, our results pave the way for relativistic quantum computation schemes.

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Cited by 1 Pith paper

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  1. Delay-Independent Stability of Nonlinear Delay Differential Equations via Isospectral Reduction

    math.DS 2025-08 unverdicted novelty 5.0 of 10

    Claims a delay-independent global exponential stability criterion for a broad class of nonlinear nonautonomous delay differential equations using isospectral reduction of an associated sequence of matrices.

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