A quantum random number generator on a nanosatellite in low Earth orbit

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作者
Ayesha Reezwana
Tanvirul Islam
Xueliang Bai
Christoph F. Wildfeuer
Alexander Ling
James A. Grieve
机构
[1] National University of Singapore,Centre for Quantum Technologies
[2] The University of Sydney,ARC Training Centre for CubeSats, UAVs, and Their Applications (CUAVA), School of Physics
[3] FHNW University of Applied Sciences and Arts Northwestern Switzerland,School of Engineering
[4] National University of Singapore,Department of Physics
[5] Technology Innovation Institute,Quantum Research Centre
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Quantum random number generators find applications in both quantum and classical communications schemes, particularly in security protocols where they can be used as a source of random seed or key material. In this work, we describe the implementation of a quantum random number generator on-board a nanosatellite deployed in low Earth orbit. Our generator samples shot noise from an entangled photon-pair source based on spontaneous parametric down-conversion, linking the entropy of the output to the quantization of the down-converted beam. We present analyzed data from the orbiting instrument alongside data taken from a ground-based engineering model where the statistical test suites indicate a good match to the output from a uniform distribution. Finally, we use the source to implement a prototype for an off-grid randomness beacon. This work paves the way to future low Earth orbit based public quantum randomness beacons.
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