Sufficient conditions for hardness of lossy Gaussian boson sampling

Fuente: arXiv
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Hauptverfasser: Go, Byeongseon, Oh, Changhun, Jeong, Hyunseok
Format: Preprint
Veröffentlicht: 2025
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author Go, Byeongseon
Oh, Changhun
Jeong, Hyunseok
author_facet Go, Byeongseon
Oh, Changhun
Jeong, Hyunseok
contents Gaussian boson sampling (GBS) is a prominent candidate for the experimental demonstration of quantum advantage. However, while the current implementations of GBS are unavoidably subject to noise, the robustness of the classical intractability of GBS against noise remains largely unexplored. In this work, we establish the complexity-theoretic foundations for the classical intractability of noisy GBS under photon loss, which is a dominant source of imperfection in current implementations. We identify the loss threshold below which lossy GBS maintains the same complexity-theoretic level as ideal GBS, and show that this holds when at most a logarithmic fraction of photons is lost. We additionally derive an intractability criterion for the loss rate through a direct quantification of the statistical distance between ideal and lossy GBS. This work presents the first rigorous characterization of classically intractable regimes of lossy GBS, thereby serving as a crucial step toward demonstrating quantum advantage with near-term implementations.
format Preprint
id arxiv_https___arxiv_org_abs_2511_07853
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Sufficient conditions for hardness of lossy Gaussian boson sampling
Go, Byeongseon
Oh, Changhun
Jeong, Hyunseok
Quantum Physics
Gaussian boson sampling (GBS) is a prominent candidate for the experimental demonstration of quantum advantage. However, while the current implementations of GBS are unavoidably subject to noise, the robustness of the classical intractability of GBS against noise remains largely unexplored. In this work, we establish the complexity-theoretic foundations for the classical intractability of noisy GBS under photon loss, which is a dominant source of imperfection in current implementations. We identify the loss threshold below which lossy GBS maintains the same complexity-theoretic level as ideal GBS, and show that this holds when at most a logarithmic fraction of photons is lost. We additionally derive an intractability criterion for the loss rate through a direct quantification of the statistical distance between ideal and lossy GBS. This work presents the first rigorous characterization of classically intractable regimes of lossy GBS, thereby serving as a crucial step toward demonstrating quantum advantage with near-term implementations.
title Sufficient conditions for hardness of lossy Gaussian boson sampling
topic Quantum Physics
url https://arxiv.org/abs/2511.07853