Solitonic excitations in \(\mathrm{AdS}_2\)

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Publication:6055793

DOI10.1007/JHEP07(2023)186arXiv2212.05065OpenAlexW4313456242MaRDI QIDQ6055793

Author name not available (Why is that?)

Publication date: 29 September 2023

Published in: (Search for Journal in Brave)

Abstract: We construct large families of supergravity solutions that are asymptotic to AdS2 and terminate with a cap that is singular in two dimensions but smooth in higher dimensions. These solutions break supersymmetry and conformal invariance. They correspond to finite-energy excitations in empty AdS2 that back-react on the geometry by inducing non-trivial bubbling topology. They are constructed from the novel technique associated with the Ernst formalism for AdSDimesmathcalC solitons in supergravity [arXiv:2210.06483]. The technique is applied to D=2 in M-theory with mathcalC=S3imesT6. The directions of mathcalC degenerate smoothly as a chain of bolts which ends the spacetime in the IR and generates non-supersymmetric bubbles supported by M2-brane flux. Some specific solutions have "flat" directions where the sizes of their bubbles are totally unconstrained and can be arbitrarily tuned while the asymptotics remains fixed. The solitons should correspond to regular non-supersymmetric states of a holographically dual CFT1.


Full work available at URL: https://arxiv.org/abs/2212.05065



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