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Complexity growth of massive black hole with a probe string

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arxiv 2104.12998 v3 pith:RJNMJOLG submitted 2021-04-27 hep-th

classification hep-th
keywords termcomplexitynambu-gotostringactionblackboundarycontribute
verification ladder T0 review T1 audit T2 compute T3 formal
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In this work, we study the computational complexity of massive gravity theory via the "Complexity = Action" conjecture. Our system contains a particle moving on the boundary of the black hole spacetime. It is dual to inserting a fundamental string in the bulk background. Then this string would contribute a Nambu-Goto term, such that the total action is composed of the Einstein-Hilbert term, Nambu-Goto term and the boundary term. We shall investigate the time development of this system, and mainly discuss the features of the Nambu-Goto term affected by the graviton mass and the horizon curvature in different dimensions. Our study could contribute interesting properties of complexity.

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  1. $R^2$ corrections to Complexity Growth with a Probe String

    hep-ph 2025-07 conditional novelty 4.0 of 10

    In Gauss-Bonnet AdS5, the probe-string complexity growth is maximized at zero velocity, independent of the GB coupling when stationary, and linear in temperature.

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