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Main Authors: Ostner, Matthias, De Marco, Innocenzo, Roubal, Christian
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2507.17471
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author Ostner, Matthias
De Marco, Innocenzo
Roubal, Christian
author_facet Ostner, Matthias
De Marco, Innocenzo
Roubal, Christian
contents Quantum random number generators (QRNGs) based on semiconductor laser phase noise are an inexpensive and efficient resource for true random numbers. Commercially available technology allows for designing QRNG setups tailored to specific use cases. However, it is important to constantly monitor whether the QRNG is performing according to the desired security standards in terms of independence and uniform distribution of the generated numbers. This is especially important in cryptographic applications. This paper presents a test scheme that helps to assess the acceptable operating conditions of a semiconductor laser for QRNG operation, using commonly accessible methods. This can be used for system monitoring, but crucially also to help the user choose the laser diode which better suits their needs. Two specific quality measurements, ensuring proper operation of the device, are explained and discussed. Setup-specific approaches for setting an acceptance boundary for these measures are presented and exemplary measurement data showing their effectiveness is given. By following the comprehensible procedure described here, a QRNG qualification environment tailored to specific security requirements can be reproduced.
format Preprint
id arxiv_https___arxiv_org_abs_2507_17471
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Simple Method of Evaluating Laser Diode Suitability for Phase-Noise Based QRNG
Ostner, Matthias
De Marco, Innocenzo
Roubal, Christian
Quantum Physics
Quantum random number generators (QRNGs) based on semiconductor laser phase noise are an inexpensive and efficient resource for true random numbers. Commercially available technology allows for designing QRNG setups tailored to specific use cases. However, it is important to constantly monitor whether the QRNG is performing according to the desired security standards in terms of independence and uniform distribution of the generated numbers. This is especially important in cryptographic applications. This paper presents a test scheme that helps to assess the acceptable operating conditions of a semiconductor laser for QRNG operation, using commonly accessible methods. This can be used for system monitoring, but crucially also to help the user choose the laser diode which better suits their needs. Two specific quality measurements, ensuring proper operation of the device, are explained and discussed. Setup-specific approaches for setting an acceptance boundary for these measures are presented and exemplary measurement data showing their effectiveness is given. By following the comprehensible procedure described here, a QRNG qualification environment tailored to specific security requirements can be reproduced.
title A Simple Method of Evaluating Laser Diode Suitability for Phase-Noise Based QRNG
topic Quantum Physics
url https://arxiv.org/abs/2507.17471