Evaluating noises of fast-simulated boson sampling with statistical benchmark methods

Fuente: arXiv
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Auteurs principaux: Ji, Yang, Ye, Yongjin, Wang, Qiao, Wang, Shi, Hou, Jie, Wu, Yongzheng, Wang, Zijian, Jiang, Bo
Format: Preprint
Publié: 2025
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_version_ 1866916029586735104
author Ji, Yang
Ye, Yongjin
Wang, Qiao
Wang, Shi
Hou, Jie
Wu, Yongzheng
Wang, Zijian
Jiang, Bo
author_facet Ji, Yang
Ye, Yongjin
Wang, Qiao
Wang, Shi
Hou, Jie
Wu, Yongzheng
Wang, Zijian
Jiang, Bo
contents It is important to know noise levels of boson sampling in order to cautiously demonstrate the quantum computational advantage or realize certain tasks. Based on those statistical benchmark methods such as the correlators and clouds, which are initially proposed to discriminate boson sampling and other mockups, we quantificationally evaluate noises of photon partial distinguishability and photon loss compensated by dark counts. This is feasible owing to the fact that the output distribution unbalances are suppressed by noises, which are actually results of multi-photon interferences. This is why the evaluation performance is better when high order correlators or correspondent clouds are employed. Our results indicate that the statistical benchmark methods can also work in the task of evaluating noises of boson sampling. An effective scheme is also introduced to fast simulate noisy samples, especially those with photon partial distinguishability.
format Preprint
id arxiv_https___arxiv_org_abs_2510_00056
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Evaluating noises of fast-simulated boson sampling with statistical benchmark methods
Ji, Yang
Ye, Yongjin
Wang, Qiao
Wang, Shi
Hou, Jie
Wu, Yongzheng
Wang, Zijian
Jiang, Bo
Quantum Physics
It is important to know noise levels of boson sampling in order to cautiously demonstrate the quantum computational advantage or realize certain tasks. Based on those statistical benchmark methods such as the correlators and clouds, which are initially proposed to discriminate boson sampling and other mockups, we quantificationally evaluate noises of photon partial distinguishability and photon loss compensated by dark counts. This is feasible owing to the fact that the output distribution unbalances are suppressed by noises, which are actually results of multi-photon interferences. This is why the evaluation performance is better when high order correlators or correspondent clouds are employed. Our results indicate that the statistical benchmark methods can also work in the task of evaluating noises of boson sampling. An effective scheme is also introduced to fast simulate noisy samples, especially those with photon partial distinguishability.
title Evaluating noises of fast-simulated boson sampling with statistical benchmark methods
topic Quantum Physics
url https://arxiv.org/abs/2510.00056