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Holographic Subregion Complexity in Einstein-Born-Infeld theory

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arxiv 1808.10169 v2 pith:PIVZZKWN submitted 2018-08-30 hep-th

Holographic Subregion Complexity in Einstein-Born-Infeld theory

classification hep-th
keywords subregioncomplexityevolutionholographicchargeeinstein-born-infeldtheoryargue
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We numerically investigate the evolution of the holographic subregion complexity during a quench process in Einstein-Born-Infeld theory. Based on the subregion CV conjecture, we argue that the subregion complexity can be treated as a probe to explore the interior of the black hole. The effects of the nonlinear parameter and the charge on the evolution of the holographic subregion complexity are also investigated. When the charge is sufficiently large, it not only changes the evolution pattern of the subregion complexity, but also washes out the second stage featured by linear growth.

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Cited by 1 Pith paper

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  1. Holographic Timelike Entanglement and Subregion Complexity in Localized AdS3*S3*T4 Black Holes

    hep-th 2026-07 conditional novelty 6.0

    Timelike entanglement and subregion complexity detect the cap–horizon transition of localized AdS3×S3×T4 black poles via fixed-boundary-interval Lorentzian branch selection, effects absent in BTZ and large-r limits.