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Self-calibrating tomography for multi-dimensional systems

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arxiv 1212.0556 v2 pith:VVWUUVL5 submitted 2012-12-03 quant-ph

Self-calibrating tomography for multi-dimensional systems

classification quant-ph
keywords self-calibratingstatesystemstomographyquantumunknownallowsalways
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a formalism for self-calibrating tomography of arbitrary dimensional systems. Self-calibrating quantum state tomography was first introduced in the context of qubits, and allows the reconstruction of the density matrix of an unknown quantum state despite incomplete knowledge of the unitary operations used to change the measurement basis. We show how this can be generalized to qudits, i.e. d-level systems, and provide a specific example for a V-type three-level atomic system whose transition dipole moments are not known. We show that it is always possible to retrieve the unknown state and process parameters, except for a set of zero measure in the state-parameter space.

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