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Stability of Wilson Loops and Other Observables in Various Type IIB Backgrounds
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This work involves the stability study of various observables (Wilson loop, 't Hooft loop and Entanglement Entropy) under linear fluctuations of the coordinates for certain ten-dimensional solutions of type IIB Supergravity that have appeared in the literature recently. These backgrounds are defined using intersecting and wrapped D5 branes, their holographically dual field theories are speculated to confine and they have a non-local UV completion that is governed by Little String Theory. The present study confirms previous claims on the stability of the solutions made using the concavity condition for the energy of the probe strings, by studying the eigenvalue problem for each case and also providing a numerical analysis.
Forward citations
Cited by 2 Pith papers
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Exact Schwarzian Metric Factor and Holographic Wilson-Loop Screening
Exact Schwarzian averaging yields a completely monotone metric factor with no confining minimum, so the Wilson-loop potential screens as E(L) ~ -κ_IR/L² rather than confining.
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Universal Observables, SUSY RG-Flows and Holography
New Type IIB, 11d, and Type IIA supergravity flows dual to twisted-compactified 4d SCFTs yield a universal factorization of Wilson loops, flow central charges, and complexity.
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