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Quantum Random Numbers generated by the Cloud Superconducting Quantum Computer

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arxiv 1906.04410 v2 pith:Z6UXCX27 submitted 2019-06-11 quant-ph cs.CRcs.DCphysics.data-anstat.CO

classification quant-phcs.CRcs.DCphysics.data-anstat.CO
keywords randomquantumcloudcomputernumberconditiongeneratorsqubits
verification ladder T0 review T1 audit T2 compute T3 formal

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A cloud quantum computer is similar to a random number generator in that its physical mechanism is inaccessible to its users. In this respect, a cloud quantum computer is a black box. In both devices, its users decide the device condition from the output. A framework to achieve this exists in the field of random number generation in the form of statistical tests for random number generators. In the present study, we generated random numbers on a 20-qubit cloud quantum computer and evaluated the condition and stability of its qubits using statistical tests for random number generators. As a result, we observed that some qubits were more biased than others. Statistical tests for random number generators may provide a simple indicator of qubit condition and stability, enabling users to decide for themselves which qubits inside a cloud quantum computer to use.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Independent Randomness Tests based on the Orthogonalized Non-overlapping Template Matching Test

    math.ST 2019-08 conditional novelty 6.0 of 10

    The paper derives a closed-form correlation between template matching test items and shows that whitening the per-block counts produces statistically independent randomness tests.

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