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Research PaperResearchia:202608.31069

Classical Commitment over Quantum Channels with Limited Entanglement Assistance

Remi A. Chou

Abstract

We study classical string commitment over quantum channels with limited preshared entanglement. For noninteractive protocols, we determine the commitment capacity of a class of channels with input dimension $d$ that, at each use, sample a pair of classical random variables $(F,Z)$, apply one of the $d^2$ Heisenberg--Weyl operators indexed by $Z$ to the input, and deliver the transformed quantum system together with $F$ to the receiver. If $E$ is the available entanglement rate in bits per channe...

Submitted: August 31, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

We study classical string commitment over quantum channels with limited preshared entanglement. For noninteractive protocols, we determine the commitment capacity of a class of channels with input dimension dd that, at each use, sample a pair of classical random variables (F,Z)(F,Z), apply one of the d2d^2 Heisenberg--Weyl operators indexed by ZZ to the input, and deliver the transformed quantum system together with FF to the receiver. If EE is the available entanglement rate in bits per channel use, then the capacity is min⁑{H(Z∣F),log⁑2d+E}\min\{H(Z|F),\log_2d+E\}. This class of channels encompasses quantum erasure and depolarizing channels, as well as families of Pauli channels. Additionally, for interactive protocols, we show that the commitment rate cannot exceed log⁑2d+E\log_2d+E bits per channel use, so that when H(Z∣F)β‰₯log⁑2d+EH(Z|F)\geq\log_2d+E, interactive communication does not increase the capacity. As a consequence, for interactive protocols, we determine the capacity of the quantum erasure channel.


Source: arXiv:2608.28500v1 - http://arxiv.org/abs/2608.28500v1 PDF: https://arxiv.org/pdf/2608.28500v1 Original Link: http://arxiv.org/abs/2608.28500v1

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Date:
Aug 31, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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