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Publications (10 of 11) Show all publications
Flodgren, N. & Sundborg, B. (2024). Classifying large N limits of multiscalar theories by algebra. Journal of High Energy Physics (JHEP), 2024(6), Article ID 108.
Open this publication in new window or tab >>Classifying large N limits of multiscalar theories by algebra
2024 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, Vol. 2024, no 6, article id 108Article in journal (Refereed) Published
Abstract [en]

We develop a new approach to RG flows and show that one-loop flows in multiscalar theories can be described by commutative but non-associative algebras. As an example related to D-brane field theories and tensor models, we study the algebra of a theory with M SU(N) adjoint scalars and its large N limits. The algebraic concepts of idempotents and Peirce numbers/Kowalevski exponents are used to characterise the RG flows. We classify and describe all large N limits of algebras of multiadjoint scalar models: the standard ‘t Hooft matrix theory limit, a ‘multi-matrix’ limit, each with one free parameter, and an intermediate case with extra symmetry and no free parameter of the algebra, but an emergent free parameter from a line of one-loop fixed points. The algebra identifies these limits without diagrammatic or combinatorial analysis.

Keywords
1/N Expansion, Renormalization Group, M(atrix) Theories, D-branes
National Category
Other Physics Topics
Identifiers
urn:nbn:se:su:diva-235252 (URN)10.1007/jhep06(2024)108 (DOI)001250550700002 ()2-s2.0-85196303608 (Scopus ID)
Available from: 2024-11-04 Created: 2024-11-04 Last updated: 2024-11-11Bibliographically approved
Flodgren, N. & Sundborg, B. (2023). One-loop algebras and fixed flow trajectories in adjoint multi-scalar gauge theory. Journal of High Energy Physics (JHEP), 2023(4), Article ID 129.
Open this publication in new window or tab >>One-loop algebras and fixed flow trajectories in adjoint multi-scalar gauge theory
2023 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, Vol. 2023, no 4, article id 129Article in journal (Refereed) Published
Abstract [en]

We study the one loop renormalisation of 4d SU(N) Yang-Mills theory with M adjoint representation scalar multiplets related by O(M) symmetry. General M are of field theoretic interest, and the 4d one loop beta function of the gauge coupling g2 vanishes for the case M = 22, which is intriguing for string theory. This case is related to D3 branes of critical bosonic string theory in D = 22 + 4 = 26. An RG fixed point could have provided a definition for a purely bosonic AdS/CFT, but we show that scalar self-couplings λ ruin one-loop conformal invariance in the large N limit. There are real fixed flows (fixed points of λ/g2) only for M ≥ 406, rendering one-loop fixed points of the gauge coupling and scalar couplings incompatible.

We develop and check an algebraic approach to the one-loop renormalisation group which we find to be characterised by a non-associative algebra of marginal couplings. In the large N limit, the resulting RG flows typically suffer from strong coupling in both the ultraviolet and the infrared. Only for M ≥ 406 fine-tuned solutions exist which are weakly coupled in the infrared.

Keywords
1, N Expansion, Bosonic Strings, D-Branes, Renormalization Group
National Category
Other Physics Topics
Identifiers
urn:nbn:se:su:diva-216989 (URN)10.1007/JHEP04(2023)129 (DOI)000976173600001 ()2-s2.0-85156255127 (Scopus ID)
Available from: 2023-05-26 Created: 2023-05-26 Last updated: 2024-11-04Bibliographically approved
Engelsöy, J. & Sundborg, B. (2021). Tidal excitation as mixing in thermal CFT. Journal of High Energy Physics (JHEP) (8), Article ID 085.
Open this publication in new window or tab >>Tidal excitation as mixing in thermal CFT
2021 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, no 8, article id 085Article in journal (Refereed) Published
Abstract [en]

We use mixed correlators in thermal CFT as clean probes of the strong gravity effects in their holographic duals. The dual interpretation of mixing is an inelastic conversion of one field to another field, induced by gravity: tidal excitation. We find an enhanced mixing at high temperatures, corresponding to large AdS black holes, concentrated to small boundary momenta, dual to the deep bulk, where strong gravitational fields are expected. We also find large O(1/GN) tidal conversion in the low temperature phase of the U(N) vector model, strengthening suspicions that the bulk dual of this phase also houses extremely compact objects.

Keywords
AdS-CFT Correspondence, Black Holes, Conformal Field Theory, Higher Spin Gravity
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-198453 (URN)10.1007/JHEP08(2021)085 (DOI)000686644600002 ()
Available from: 2021-11-08 Created: 2021-11-08 Last updated: 2022-02-25Bibliographically approved
Larana-Aragon, J., Engelsöy, J., Sundborg, B. & Wintergerst, N. (2020). Operator thermalisation in d >2: Huygens or resurgence. Journal of High Energy Physics (JHEP), 2020(9), Article ID 103.
Open this publication in new window or tab >>Operator thermalisation in d >2: Huygens or resurgence
2020 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, Vol. 2020, no 9, article id 103Article in journal, Editorial material (Refereed) Published
Abstract [en]

Correlation functions of most composite operators decay exponentially with time at non-zero temperature, even in free field theories. This insight was recently codified in an OTH (operator thermalisation hypothesis). We reconsider an early example, with large N free fields subjected to a singlet constraint. This study in dimensions d > 2 motivates technical modifications of the original OTH to allow for generalised free fields. Furthermore, Huygens’ principle, valid for wave equations only in even dimensions, leads to differences in thermalisation. It works straightforwardly when Huygens’ principle applies, but thermalisation is more elusive if it does not apply. Instead, in odd dimensions we find a link to resurgence theory by noting that exponential relaxation is analogous to non- perturbative corrections to an asymptotic perturbation expansion. Without applying the power of resurgence technology we still find support for thermalisation in odd dimensions, although these arguments are incomplete.

Place, publisher, year, edition, pages
Springer Berlin/Heidelberg, 2020
Keywords
1/N Expansion, AdS-CFT Correspondence, Holography and condensed matter physics (AdS/CMT), Quantum Dissipative Systems
National Category
Subatomic Physics
Research subject
Theoretical Physics; High Energy Physics
Identifiers
urn:nbn:se:su:diva-187000 (URN)10.1007/JHEP09(2020)103 (DOI)000573093300002 ()
Available from: 2020-11-30 Created: 2020-11-30 Last updated: 2022-03-11Bibliographically approved
Banerjee, S., Engelsöy, J., Laraña-Aragon, J., Sundborg, B., Thorlacius, L. & Wintergerst, N. (2019). Quenched coupling, entangled equilibria, and correlated composite operators: a tale of two O(N) models. Journal of High Energy Physics (JHEP) (8), Article ID 139.
Open this publication in new window or tab >>Quenched coupling, entangled equilibria, and correlated composite operators: a tale of two O(N) models
Show others...
2019 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, no 8, article id 139Article in journal (Refereed) Published
Abstract [en]

A macroscopic version of Einstein-Podolsky-Rosen entanglement is obtained by quenching a quadratic coupling between two O(N) vector models. A quench of the mixed vacuum produces an excited entangled state, reminiscent of purified thermal equilibrium, whose properties can be studied analytically in the free limit of the individual field theories. The decoupling of different wavelength modes in free field theory prevents true thermalisation but a more subtle difference is that the density operator obtained by a partial trace does not commute with the post-quench Hamiltonian. Generalized thermal behaviour is obtained at late times, in the limit of weak initial mixing or a smooth but rapid quench. More surprisingly, late-time correlation functions of composite operators in the post-quench free field theory share interesting properties with correlators in strongly coupled systems. We propose a holographic interpretation of our result.

Keywords
AdS-CFT Correspondence, Effective Field Theories, Holography and condensed matter physics (AdS/CMT)
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-175109 (URN)10.1007/JHEP08(2019)139 (DOI)000483943900002 ()
Available from: 2019-10-18 Created: 2019-10-18 Last updated: 2022-03-23Bibliographically approved
Amado, I., Sundborg, B., Thorlacius, L. & Wintergerst, N. (2018). Black holes from large N singlet models. Journal of High Energy Physics (JHEP) (3), Article ID 075.
Open this publication in new window or tab >>Black holes from large N singlet models
2018 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, no 3, article id 075Article in journal (Refereed) Published
Abstract [en]

The emergent nature of spacetime geometry and black holes can be directly probed in simple holographic duals of higher spin gravity and tensionless string theory. To this end, we study time dependent thermal correlation functions of gauge invariant observables in suitably chosen free large N gauge theories. At low temperature and on short time scales the correlation functions encode propagation through an approximate AdS spacetime while interesting departures emerge at high temperature and on longer time scales. This includes the existence of evanescent modes and the exponential decay of time dependent boundary correlations, both of which are well known indicators of bulk black holes in AdS/CFT. In addition, a new time scale emerges after which the correlation functions return to a bulk thermal AdS form up to an overall temperature dependent normalization. A corresponding length scale was seen in equal time correlation functions in the same models in our earlier work.

Keywords
AdS-CFT Correspondence, Black Holes in String Theory, Higher Spin Gravity, Confinement
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-156046 (URN)10.1007/JHEP03(2018)075 (DOI)000428791300004 ()
Available from: 2018-05-02 Created: 2018-05-02 Last updated: 2022-03-23Bibliographically approved
Amado, I., Sundborg, B., Thorlacius, L. & Wintergerst, N. (2017). Probimg emergent geometry through phase transitions in free vector and matrix models. Journal of High Energy Physics (JHEP) (2), Article ID 005.
Open this publication in new window or tab >>Probimg emergent geometry through phase transitions in free vector and matrix models
2017 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, no 2, article id 005Article in journal (Refereed) Published
Abstract [en]

Boundary correlation functions provide insight into the emergence of an effective geometry in higher spin gravity duals of O(N) or U(N) symmetric field theories. On a compact manifold, the singlet constraint leads to nontrivial dynamics at finite temperature and large N phase transitions even at vanishing 't Hooft coupling. At low temperature, the leading behavior of boundary two-point functions is consistent with propagation through a bulk thermal anti de Sitter space. Above the phase transition, the two-point function shows significant departure from thermal AdS space and the emergence of localized black hole like objects in the bulk. In adjoint models, these objects appear at length scales of order of the AdS radius, consistent with a Hawking-Page transition, but in vector models they are parametrically larger than the AdS scale. In low dimensions, we find another crossover at large distances beyond which the correlation function again takes a thermal AdS form, albeit with a temperature dependent normalization factor.

Keywords
AdS-CFT Correspondence, Black Holes in String Theory, Higher Spin Gravity, Confinement
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-142524 (URN)10.1007/JHEP02(2017)005 (DOI)000397646300005 ()
Available from: 2017-05-09 Created: 2017-05-09 Last updated: 2022-03-23Bibliographically approved
Apolo, L. & Sundborg, B. (2015). Strings from 3D gravity: asymptotic dynamics of AdS(3) gravity with free boundary conditions. Journal of High Energy Physics (JHEP) (6), Article ID 171.
Open this publication in new window or tab >>Strings from 3D gravity: asymptotic dynamics of AdS(3) gravity with free boundary conditions
2015 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, no 6, article id 171Article in journal (Refereed) Published
Abstract [en]

Pure three-dimensional gravity in anti-de Sitter space can be formulated as an SL(2, R) x SL(2, R) Chern-Simons theory, and the latter can be reduced to a WZW theory at the boundary. In this paper we show that AdS(3) gravity with free boundary conditions is described by a string at the boundary whose target spacetime is also AdS(3). While boundary conditions in the standard construction of Coussaert, Henneaux, and van Driel are enforced through constraints on the WZW currents, we find that free boundary conditions are partially enforced through the string Virasoro constraints.

Keywords
Classical Theories of Gravity, Bosonic Strings, Chern-Simons Theories
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-123360 (URN)10.1007/JHEP06(2015)171 (DOI)000363487900001 ()
Available from: 2015-11-25 Created: 2015-11-24 Last updated: 2022-03-23Bibliographically approved
Kühnel, F. & Sundborg, B. (2014). Decay of graviton condensates and their generalizations in arbitrary dimensions. Physical Review D, 90(6), 064025
Open this publication in new window or tab >>Decay of graviton condensates and their generalizations in arbitrary dimensions
2014 (English)In: Physical Review D, ISSN 1550-7998, E-ISSN 1550-2368, Vol. 90, no 6, p. 064025-Article in journal (Refereed) Published
Abstract [en]

Classicalons are self-bound classical field configurations, which include black holes in general relativity. In quantum theory, they are described by condensates of many soft quanta. In this work, their decay properties are studied in arbitrary dimensions. It is found that generically the decays of other classicalons are enhanced compared to pure graviton condensates, i.e. black holes. The evaporation of higher dimensional graviton condensates turns out to match Hawking radiation solely due to nonlinearites captured by the classicalon picture. Although less stable than black holes, all self-bound condensates are shown to be stable in the limit of large mass. Like for black holes, the effective coupling always scales as the inverse of the number of constituents, indicating that these systems are at critical points of quantum phase transitions. Consequences for cosmology, astro-and collider physics are briefly discussed.

National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-108372 (URN)10.1103/PhysRevD.90.064025 (DOI)000342141600009 ()2-s2.0-84985904927 (Scopus ID)
Note

AuthorCount:2;

Available from: 2014-10-24 Created: 2014-10-22 Last updated: 2022-10-10Bibliographically approved
Kühnel, F. & Sundborg, B. (2014). High-energy gravitational scattering and Bose-Einstein condensates of gravitons. Journal of High Energy Physics (JHEP) (12), 016
Open this publication in new window or tab >>High-energy gravitational scattering and Bose-Einstein condensates of gravitons
2014 (English)In: Journal of High Energy Physics (JHEP), ISSN 1126-6708, E-ISSN 1029-8479, no 12, p. 016-Article in journal (Refereed) Published
Abstract [en]

Quantum black holes are difficult to describe. We consider two seemingly divergent approaches, high-energy scattering and the proposal to regard black holes as Bose-Einstein condensates of gravitons, and establish a connection between them. Results from the eikonal approximation of high-energy scattering are reconsidered and processed further by a saddle-point approximation. The dominant contribution to the scattering amplitude comes from a ladder diagram with the exchange of N gravitons, and the number of gravitons follows a Poisson distribution. This approximation supports the picture of a graviton Bose-Einstein condensate with an extent equal to the Schwarzschild radius, which grows with N in a way determined by the saddle point. The approach permits calculations of 1/N corrections from the fluctuations around the saddle points and we comment on these. Scattering methods might be useful probes of quantum black holes, especially when interpreted in terms of condensates.

Keywords
Black Holes, Models of Quantum Gravity, Field Theories in Higher Dimensions
National Category
Subatomic Physics
Identifiers
urn:nbn:se:su:diva-111401 (URN)10.1007/JHEP12(2014)016 (DOI)000345919000001 ()
Note

AuthorCount:2;

Available from: 2015-01-05 Created: 2015-01-02 Last updated: 2026-03-30Bibliographically approved
Organisations
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0002-2419-7210

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