001     481733
005     20230510112936.0
024 7 _ |a Gimenez-Grau:2022czc
|2 INSPIRETeX
024 7 _ |a inspire:2141807
|2 inspire
024 7 _ |a arXiv:2208.11715
|2 arXiv
024 7 _ |a 10.3204/PUBDB-2022-04552
|2 datacite_doi
037 _ _ |a PUBDB-2022-04552
041 _ _ |a English
088 _ _ |a DESY-22-142
|2 DESY
088 _ _ |a arXiv:2208.11715
|2 arXiv
100 1 _ |a Gimenez-Grau, Aleix
|0 P:(DE-H253)PIP1086631
|b 0
245 _ _ |a Bootstrapping line defects with $O(2)$ global symmetry
260 _ _ |c 2022
336 7 _ |a Preprint
|b preprint
|m preprint
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|s 1663847624_22607
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336 7 _ |a WORKING_PAPER
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336 7 _ |a Electronic Article
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336 7 _ |a preprint
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336 7 _ |a ARTICLE
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336 7 _ |a Output Types/Working Paper
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500 _ _ |a 54 pages, 11 figures
520 _ _ |a We use the numerical bootstrap to study conformal line defects with $O(2)$ global symmetry. Our results are very general and capture in particular line defects originating from bulk CFTs with a global symmetry, which can either be preserved or partially broken by the presence of the defect. We begin with an agnostic approach and perform a systematic bootstrap study of correlation functions between two canonical operators on the defect: the displacement and the tilt. We then focus on two interesting theories: a monodromy line defect and a localized magnetic field line defect. To this end, we combine the numerical bootstrap with the $\varepsilon$-expansion, where we complement existing results in the literature with additional calculations. For the monodromy defect our numerical results are consistent with expectations, with known analytic solutions sitting inside our numerical bounds. For the localized magnetic field line defect our plots show a series of intriguing cusps which we explore.
536 _ _ |a 611 - Fundamental Particles and Forces (POF4-611)
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536 _ _ |a Emmy Noether - Emmy Noether Nachwuchsgruppe (EmmyNoether)
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588 _ _ |a Dataset connected to INSPIRE
650 _ 7 |a symmetry, global
|2 INSPIRE
650 _ 7 |a field theory, conformal
|2 INSPIRE
650 _ 7 |a defect
|2 INSPIRE
650 _ 7 |a bootstrap
|2 INSPIRE
650 _ 7 |a magnetic field
|2 INSPIRE
650 _ 7 |a monodromy
|2 INSPIRE
650 _ 7 |a O(2)
|2 INSPIRE
650 _ 7 |a capture
|2 INSPIRE
650 _ 7 |a correlation function
|2 INSPIRE
650 _ 7 |a numerical calculations
|2 INSPIRE
693 _ _ |0 EXP:(DE-MLZ)NOSPEC-20140101
|5 EXP:(DE-MLZ)NOSPEC-20140101
|e No specific instrument
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700 1 _ |a Lauria, Edoardo
|0 E.Lauria.1
|b 1
700 1 _ |a Liendo, Pedro
|0 P:(DE-H253)PIP1031480
|b 2
700 1 _ |a van Vliet, Philine
|0 P:(DE-H253)PIP1090382
|b 3
|e Corresponding author
|u desy
856 4 _ |u https://bib-pubdb1.desy.de/record/481733/files/HTML-Approval_of_scientific_publication.html
856 4 _ |u https://bib-pubdb1.desy.de/record/481733/files/PDF-Approval_of_scientific_publication.pdf
856 4 _ |y OpenAccess
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856 4 _ |y OpenAccess
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910 1 _ |a Deutsches Elektronen-Synchrotron
|0 I:(DE-588b)2008985-5
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910 1 _ |a Deutsches Elektronen-Synchrotron
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910 1 _ |a Deutsches Elektronen-Synchrotron
|0 I:(DE-588b)2008985-5
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|6 P:(DE-H253)PIP1090382
913 1 _ |a DE-HGF
|b Forschungsbereich Materie
|l Matter and the Universe
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|v Fundamental Particles and Forces
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914 1 _ |y 2022
915 _ _ |a OpenAccess
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915 _ _ |a Published
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920 1 _ |0 I:(DE-H253)T-20120731
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980 _ _ |a preprint
980 _ _ |a VDB
980 _ _ |a UNRESTRICTED
980 _ _ |a I:(DE-H253)T-20120731
980 1 _ |a FullTexts


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