A Study of Gate-Based and Boson Sampling Quantum Random Number Generation on IBM and Xanadu Quantum Devices

Fuente: arXiv
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Main Authors: Louamri, Mohamed Messaoud, Boussahi, Achraf, Belaloui, Nacer Eddine, Tounsi, Abdellah, Rouabah, Mohamed Taha
Format: Preprint
Published: 2025
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author Louamri, Mohamed Messaoud
Boussahi, Achraf
Belaloui, Nacer Eddine
Tounsi, Abdellah
Rouabah, Mohamed Taha
author_facet Louamri, Mohamed Messaoud
Boussahi, Achraf
Belaloui, Nacer Eddine
Tounsi, Abdellah
Rouabah, Mohamed Taha
contents Quantum mechanics offers a fundamentally unpredictable entropy source due to the intrinsic probabilistic nature of quantum measurements, making it attractive for secure random number generation. This paper explores the practicality of generating random numbers from two quantum platforms: gate-based circuits on IBM Quantum and (Gaussian) boson sampling with Xanadu Borealis. We implement simple post-processing methods, including the classic Von Neumann extractor and two tailored variants designed to address the correlated structure of boson sampling outputs. We evaluate debiased output from real quantum hardware using the NIST SP800-22r1a test suite and measure the extraction efficiency of each debiasing method. Results show that, while unbiased bitstreams can be achieved on both platforms, throughput remains low and cost per random bit is high compared to specialized QRNG devices.
format Preprint
id arxiv_https___arxiv_org_abs_2507_03823
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Study of Gate-Based and Boson Sampling Quantum Random Number Generation on IBM and Xanadu Quantum Devices
Louamri, Mohamed Messaoud
Boussahi, Achraf
Belaloui, Nacer Eddine
Tounsi, Abdellah
Rouabah, Mohamed Taha
Quantum Physics
Emerging Technologies
Quantum mechanics offers a fundamentally unpredictable entropy source due to the intrinsic probabilistic nature of quantum measurements, making it attractive for secure random number generation. This paper explores the practicality of generating random numbers from two quantum platforms: gate-based circuits on IBM Quantum and (Gaussian) boson sampling with Xanadu Borealis. We implement simple post-processing methods, including the classic Von Neumann extractor and two tailored variants designed to address the correlated structure of boson sampling outputs. We evaluate debiased output from real quantum hardware using the NIST SP800-22r1a test suite and measure the extraction efficiency of each debiasing method. Results show that, while unbiased bitstreams can be achieved on both platforms, throughput remains low and cost per random bit is high compared to specialized QRNG devices.
title A Study of Gate-Based and Boson Sampling Quantum Random Number Generation on IBM and Xanadu Quantum Devices
topic Quantum Physics
Emerging Technologies
url https://arxiv.org/abs/2507.03823