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High-accuracy adaptive quantum tomography for high-dimensional quantum systems

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arxiv 2009.04791 v1 pith:7YQ5GXJQ submitted 2020-09-10 quant-ph

High-accuracy adaptive quantum tomography for high-dimensional quantum systems

classification quant-ph
keywords quantumadaptiveaccuracyboundgill-massarstatetomographyachievable
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The accuracy of estimating $d$-dimensional quantum states is limited by the Gill-Massar bound. It can be saturated in the qubit ($d=2$) scenario using adaptive standard quantum tomography. In higher dimensions, however, this is not the case and the accuracy achievable with adaptive quantum tomography quickly deteriorates with increasing $d$. Moreover, it is not known whether or not the Gill-Massar bound can be reached for an arbitrary $d$. To overcome this limitation, we introduce an adaptive tomographic method that is characterized by a precision that is better than half that of the Gill-Massar bound for any finite dimension. This provides a new achievable accuracy limit for quantum state estimation. We demonstrate the high-accuracy of our method by estimating the state of 10-dimensional quantum systems. With the advent of new technologies capable of high-dimensional quantum information processing, our results become critically relevant as state reconstruction is an essential tool for certifying the proper operation of quantum devices.

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Cited by 3 Pith papers

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