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Quantum Error Correction Fault Tolerance Open Quantum Systems Decoherence

Celestial Quantum Error Correction II: From Qudits to Celestial CFT

arXiv
Authors: Alfredo Guevara, Yangrui Hu

Year

2024

Paper ID

56926

Status

Preprint

Abstract Read

~2 min

Abstract Words

129

Citations

N/A

Abstract

A holographic CFT description of asymptotically flat spacetimes inherits vacuum degeneracies and IR divergences from its gravitational dual. We devise a Quantum Error Correcting (QEC) framework to encode both effects as correctable fluctuations on the CFT dual. The framework is physically motivated by embedding a chain of qudits in the so-called Klein spacetime and then taking a continuum $N\to \infty$ limit. At finite $N$ the qudit chain 1) enjoys a discrete version of celestial symmetries and 2) supports a Gottesman-Kitaev-Preskill (GKP) code. The limit results in hard states with quantized BMS hair in the celestial torus forming the logical subspace, robust under errors induced by soft radiation. Technically, the construction leverages the recently studied $w_{1+\infty}$ hierarchy of soft currents and its realization from a sigma model in twistor space.

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Current Paper #56926 #59492 Non-Hermitian spectral flows an... #59489 A Quantum-Classical Liouville F... #59486 DQC1 as an Open Quantum System #59476 Gravity from Transactions: Fulf...

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