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                                    <div><font face="Times New Roman,
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                                        serif"><b><font face="Times New
                                            Roman, Times, serif"><b>Friday,
                                              June 16, 2023 - IAS High
                                              Energy Theory Seminar</b></font></b></font><br>
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                                            </font></b><font face="Times
                                            New Roman, Times, serif">"Supersymmetric
                                            Black Holes and TT¯T\bar{T}
                                            Deformation"</font></font><font face="Times New Roman, Times,
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                                            Location: Bloomberg Lecture
                                            Hall (IAS) &amp; Zoom<br>
                                            <br>
                                            Zoom Link: <a href="https://theias.zoom.us/j/84232389159?pwd=UAWukoEv3RMKL8ssHZ2nUfIwggISU7.1" rel="nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer" target="_blank">https://theias.zoom.us/j/84232389159?pwd=UAWukoEv3RMKL8ssHZ2nUfIwggISU7.1</a><br>
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                                            Time: 1:45 PM<br>
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                                            Speaker: Swapnamay Mondal,
                                            Dublin Institute for
                                            Advanced Studies</font><b><font face="Times New Roman,
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                                              <br>
                                              <br>
                                            </font>Abstract: </b>The
                                          entropy of supersymmetric
                                          black holes in string theory
                                          compactifications can be
                                          related to that of a D- or
                                          M-brane system, which in many
                                          cases can be further reduced
                                          to a two-dimensional conformal
                                          field theory (CFT). For black
                                          holes in M-theory, this
                                          relation involves a decoupling
                                          limit where the black hole
                                          mass diverges. We suggest that
                                          moving away from this limit
                                          corresponds to a specific
                                          irrelevant perturbation of the
                                          CFT, namely the supersymmetric
                                          completion of the TT¯T\bar{T}
                                          deformation. We demonstrate
                                          that the black hole mass
                                          matches precisely with the </font><font face="Times New Roman, Times,
                                          serif">TT¯T\bar{T} deformed
                                          energy levels, upon
                                          identifying the TT¯T\bar{T}
                                          deformation parameter with the
                                          inverse of the leading term of
                                          the black hole mass. We
                                          discuss various implications
                                          for black holes and deformed
                                          CFT's, including a Hagedorn
                                          temperature for wrapped
                                          M5-branes, and potential
                                          change of degeneracies in the
                                          deformed theory.</font>
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                                        <p><font face="Times New Roman,
                                            Times, serif">Lisa Fleischer
                                            <br>
                                            Academic Assistant <br>
                                            School of Natural Sciences <br>
                                            Institute for Advanced Study
                                            <br>
                                            1 Einstein Drive Princeton,
                                            NJ 08540<br>
                                            <a href="mailto:lisa@ias.edu" rel="nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer nofollow noopener noreferrer" target="_blank">lisa@ias.edu</a></font></p>
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