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Bounds and Constructions of Quantum Locally Recoverable Codes from Quantum CSS Codes

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arxiv 2312.11115 v1 pith:PD3BVGJ4 submitted 2023-12-18 cs.IT math.IT

classification cs.ITmath.IT
keywords quantumlrcsclassicalcodesboundsparametersconstructionlocally
verification ladder T0 review T1 audit T2 compute T3 formal
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Classical locally recoverable codes (LRCs) have become indispensable in distributed storage systems. They provide efficient recovery in terms of localized errors. Quantum LRCs have very recently been introduced for their potential application in quantum data storage. In this paper, we use classical LRCs to investigate quantum LRCs. We prove that the parameters of quantum LRCs are bounded by their classical counterparts. We deduce the bounds on the parameters of quantum LRCs from the bounds on the parameters of the classical ones. We establish a characterization of optimal pure quantum LRCs based on classical codes with specific properties. Using well-crafted classical LRCs as ingredients in the construction of quantum CSS codes, we offer the first construction of several families of optimal pure quantum LRCs.

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Cited by 1 Pith paper

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  1. Entanglement Cost of Erasure Correction in Quantum MDS Codes

    quant-ph 2025-05 conditional novelty 6.0 of 10

    For an [[n,2t-n]]_Q quantum MDS code, correcting a single erased node over a star network costs exactly 2t qudits when the replacement node is the hub and 2t minus 1 qudits when a helper node is the hub.

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