4.4 Article

Hamilton-Jacobi renormalization for Lifshitz spacetime

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 1, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP01(2012)058

关键词

Gauge-gravity correspondence; holography and condensed matter physics (AdS/GNIT)

向作者/读者索取更多资源

Just like AdS spacetimes, Lifshitz spacetimes require counterterms in order to make the on-shell value of the bulk action finite. We study these counterterms using the Hamilton-Jacobi method. Rather than imposing boundary conditions from the start, we will derive suitable boundary conditions by requiring that divergences can be canceled using only local counterterms. We will demonstrate in examples that this procedure indeed leads to a finite bulk action while at the same time it determines the asymptotic behavior of the fields. This puts more substance to the belief that Lifshitz spacetimes are dual to Nvell-behaved field theories. As a byproduct, we will find the analogue of the conformal anomaly for Lifshitz spacetimes.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.4
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

Article Physics, Particles & Fields

Probing typical black hole microstates

Jan de Boer, Rik van Breukelen, Sagar F. Lokhande, Kyriakos Papadodimas, Erik Verlinde

JOURNAL OF HIGH ENERGY PHYSICS (2020)

Article Physics, Particles & Fields

Holographic order from modular chaos

Jan de Boer, Lampros Lamprou

JOURNAL OF HIGH ENERGY PHYSICS (2020)

Article Physics, Multidisciplinary

Non-boost invariant fluid dynamics

Jan de Boer, Jelle Hartong, Emil Have, Niels Obers, Watse Sybesma

SCIPOST PHYSICS (2020)

Editorial Material Astronomy & Astrophysics

Prospects for fundamental physics with LISA

Enrico Barausse, Emanuele Berti, Thomas Hertog, Scott A. Hughes, Philippe Jetzer, Paolo Pani, Thomas P. Sotiriou, Nicola Tamanini, Helvi Witek, Kent Yagi, Nicolas Yunes, T. Abdelsalhin, A. Achucarro, K. van Aelst, N. Afshordi, S. Akcay, L. Annulli, K. G. Arun, I. Ayuso, V. Baibhav, T. Baker, H. Bantilan, T. Barreiro, C. Barrera-Hinojosa, N. Bartolo, D. Baumann, E. Belgacem, E. Bellini, N. Bellomo, I. Ben-Dayan, I. Bena, R. Benkel, E. Bergshoefs, L. Bernard, S. Bernuzzi, D. Bertacca, M. Besancon, F. Beutler, F. Beyer, S. Bhagwat, J. Bicak, S. Biondini, S. Bize, D. Blas, C. Boehmer, K. Boller, B. Bonga, C. Bonvin, P. Bosso, G. Bozzola, P. Brax, M. Breitbach, R. Brito, M. Bruni, B. Bruegmann, H. Bulten, A. Buonanno, L. M. Burko, C. Burrage, F. Cabral, G. Calcagni, C. Caprini, A. Cardenas-Avendano, M. Celoria, K. Chatziioannou, D. Chernoff, K. Clough, A. Coates, D. Comelli, G. Compere, D. Croon, D. Cruces, G. Cusin, C. Dalang, U. Danielsson, S. Das, S. Datta, J. de Boer, V. De Luca, C. De Rham, V. Desjacques, K. Destounis, F. Di Filippo, A. Dima, E. Dimastrogiovanni, S. Dolan, D. Doneva, F. Duque, R. Durrer, W. East, R. Easther, M. Elley, J. R. Ellis, R. Emparan, J. M. Ezquiaga, M. Fairbairn, S. Fairhurst, H. F. Farmer, M. R. Fasiello, V. Ferrari, P. G. Ferreira, G. Ficarra, P. Figueras, S. Fisenko, S. Foffa, N. Franchini, G. Franciolini, K. Fransen, J. Frauendiener, N. Frusciante, R. Fujita, J. Gair, A. Ganz, P. Garcia, J. Garcia-Bellido, J. Garriga, R. Geiger, C. Geng, L. a. Gergely, C. Germani, D. Gerosa, S. B. Giddings, E. Gourgoulhon, P. Grandclement, L. Graziani, L. Gualtieri, D. Haggard, S. Haino, R. Halburd, W. -B. Han, A. J. Hawken, A. Hees, I. S. Heng, J. Hennig, C. Herdeiro, S. Hervik, J. v. Holten, C. D. Hoyle, Y. Hu, M. Hull, T. Ikeda, M. Isi, A. Jenkins, F. Julie, E. Kajfasz, C. Kalaghatgi, N. Kaloper, M. Kamionkowski, V. Karas, S. Kastha, Z. Keresztes, L. Kidder, T. Kimpson, A. Klein, S. Klioner, K. Kokkotas, H. Kolesova, S. Kolkowitz, J. Kopp, K. Koyama, N. V. Krishnendu, J. A. V. Kroon, M. Kunz, O. Lahav, A. Landragin, R. N. Lang, C. Le Poncin-Lafitte, J. Lemos, B. Li, S. Liberati, M. Liguori, F. Lin, G. Liu, F. S. N. Lobo, R. Loll, L. Lombriser, G. Lovelace, R. P. Macedo, E. Madge, E. Maggio, M. Maggiore, S. Marassi, P. Marcoccia, C. Markakis, W. Martens, K. Martinovic, C. J. A. P. Martins, A. Maselli, S. Mastrogiovanni, S. Matarrese, A. Matas, N. E. Mavromatos, A. Mazumdar, P. D. Meerburg, E. Megias, J. Miller, J. P. Mimoso, L. Mittnacht, M. M. Montero, B. Moore, P. Martin-Moruno, I. Musco, H. Nakano, S. Nampalliwar, G. Nardini, A. Nielsen, J. Novak, N. J. Nunes, M. Okounkova, R. Oliveri, F. Oppizzi, G. Orlando, N. Oshita, G. Pappas, V. Paschalidis, H. Peiris, M. Peloso, S. Perkins, V. Pettorino, I. Pikovski, L. Pilo, J. Podolsky, A. Pontzen, S. Prabhat, G. Pratten, T. Prokopec, M. Prouza, H. Qi, A. Raccanelli, A. Rajantie, L. Randall, G. Raposo, V. Raymond, S. Renaux-Petel, A. Ricciardone, A. Riotto, T. Robson, D. Roest, R. Rollo, S. Rosofsky, J. J. Ruan, D. Rubiera-Garcia, M. Ruiz, M. Rusu, F. Sabatie, N. Sago, M. Sakellariadou, I. D. Saltas, L. Sberna, B. Sathyaprakash, M. Scheel, P. Schmidt, B. Schutz, P. Schwaller, L. Shao, S. L. Shapiro, D. Shoemaker, A. d. Silva, C. Simpson, C. F. Sopuerta, A. Spallicci, B. A. Stefanek, L. Stein, N. Stergioulas, M. Stott, P. Sutton, R. Svarc, H. Tagoshi, T. Tahamtan, H. Takeda, T. Tanaka, G. Tantilian, G. Tasinato, O. Tattersall, S. Teukolsky, A. L. Tiec, G. Theureau, M. Trodden, A. Tolley, A. Toubiana, D. Traykova, A. Tsokaros, C. Unal, C. S. Unnikrishnan, E. C. Vagenas, P. Valageas, M. Vallisneri, J. Van den Brand, C. Van den Broeck, M. van de Meent, P. Vanhove, V. Varma, J. Veitch, B. Vercnocke, L. Verde, D. Vernieri, F. Vernizzi, R. Vicente, F. Vidotto, M. Visser, Z. Vlah, S. Vretinaris, S. Voelkel, Q. Wang, Yu-Tong Wang, M. C. Werner, J. Westernacher, R. v. d. Weygaert, D. Wiltshire, T. Wiseman, P. Wolf, K. Wu, K. Yamada, H. Yang, L. Yi, X. Yue, D. Yvon, M. Zilhao, A. Zimmerman, M. Zumalacarregui

GENERAL RELATIVITY AND GRAVITATION (2020)

Article Physics, Particles & Fields

Spacetime as a quantum circuit

A. Ramesh Chandra, Jan de Boer, Mario Flory, Michal P. Heller, Sergio Hortner, Andrew Rolph

Summary: The proposed finite cutoff regions of holographic spacetimes represent quantum circuits mapping between boundary states at different times, with complexity determined by gravitational action and minimized by optimal circuits. Surfaces of constant scalar curvature play a special role in optimizing quantum circuits.The proposed connection to kinematic space and discussion of possible circuit representations of gravitational action provide further insights.

JOURNAL OF HIGH ENERGY PHYSICS (2021)

Article Astronomy & Astrophysics

Random statistics of OPE coefficients and Euclidean wormholes

Alexandre Belin, Jan de Boer

Summary: The study proposes an ansatz for OPE coefficients in chaotic conformal field theories, generalizing the eigenstate thermalization hypothesis and describing heavy operators as random variables with a Gaussian distribution. By applying this ansatz in two dimensions, higher moments of OPE coefficients can be calculated and analyzed, while also relating them to genus-2 partition functions and their squares in the context of AdS(3) Einstein gravity solutions. The research suggests that calculations based on the semi-classical low-energy gravitational theory are primarily affected by the random nature of OPE coefficients, explaining the lack of factorization in partition function products.

CLASSICAL AND QUANTUM GRAVITY (2021)

Article Physics, Particles & Fields

On local and integrated stress-tensor commutators

Mert Besken, Jan de Boer, Gregoire Mathys

Summary: In Lorentzian CFTs, general properties of commutators of local operators are discussed, obtained through analytic continuation of the Euclidean operator product expansion. Explicit computations are provided for commutators of stress-tensor components in two and four-dimensional CFTs, along with rederived familiar results and considerations of light-ray operators. An infinite set of well-defined light-ray operators built from the stress-tensor in four-dimensional CFT is defined, maintaining similar properties to their two-dimensional analogues.

JOURNAL OF HIGH ENERGY PHYSICS (2021)

Article Physics, Multidisciplinary

Complexity for Conformal Field Theories in General Dimensions

Nicolas Chagnet, Shira Chapman, Jan de Boer, Claire Zukowski

Summary: The study explores the circuit complexity of conformal field theory states in arbitrary dimensions, with circuits moving along a unitary representation of the Lorentzian conformal group. Different choices of distance functions are understood in terms of the geometry of coadjoint orbits of the conformal group. The study explicitly relates circuits to timelike geodesics in anti-de Sitter space, and the complexity metric to distances between these geodesics, extending the method to circuits in other symmetry groups using a group theoretic generalization of coherent states concept.

PHYSICAL REVIEW LETTERS (2022)

Article Physics, Multidisciplinary

Charged eigenstate thermalization, Euclidean wormholes and global symmetries in quantum gravity

Alexandre Belin, Jan de Boer, Pranjal Nayak, Julian Sonner

Summary: In this paper, we generalize the eigenstate thermalization hypothesis to systems with global symmetries and present two versions considering microscopic charge conservation and exponentially suppressed violations. These versions agree for correlation functions of simple operators, but differ in the variance of charged one-point functions at finite temperature. Applying these ideas to holography and gravitational low-energy effective theories, we find that Euclidean wormholes predict a non-zero variance for charged one-point functions, which contradicts microscopic charge conservation. This implies that global symmetries in quantum gravity must either be gauged or explicitly broken by non-perturbative effects.

SCIPOST PHYSICS (2022)

Article Physics, Particles & Fields

Virasoro entanglement Berry phases

Jan de Boer, Ricardo Espindola, Bahman Najian, Dimitrios Patramanis, Jeremy van Der Heijden, Claire Zukowski

Summary: We study the parallel transport of modular Hamiltonians encoding entanglement properties of a state. In the case of 2d CFT, we find that the parallel transport process corresponds to a symplectic form in Euclidean geometry, which plays an important role in the entanglement wedge.

JOURNAL OF HIGH ENERGY PHYSICS (2022)

Article Physics, Multidisciplinary

Carroll Symmetry, Dark Energy and Inflation

Jan de Boer, Jelle Hartong, Niels A. Obers, Watse Sybesma, Stefan Vandoren

Summary: Carroll symmetry, arising from the limit of vanishing speed of light, is studied and constraints on the energy-momentum tensor are determined. The findings suggest that Carroll symmetry may be relevant for dark energy and inflation.

FRONTIERS IN PHYSICS (2022)

Article Physics, Particles & Fields

Non-Gaussianities in the statistical distribution of heavy OPE coefficients and wormholes

Alexandre Belin, Jan de Boer, Diego Liska

Summary: The study investigates non-Gaussian corrections to the statistical distribution of heavy-heavy-heavy OPE coefficients in chaotic two-dimensional conformal field theories, finding that these corrections are further exponentially suppressed in the entropy, much like the Eigenstate Thermalization Hypothesis.

JOURNAL OF HIGH ENERGY PHYSICS (2022)

Article Physics, Particles & Fields

OPE statistics from higher-point crossing

Tarek Anous, Alexandre Belin, Jan de Boer, Diego Liska

Summary: New asymptotic formulas for the distribution of OPE coefficients in conformal field theories are presented. These formulas, derived from crossing symmetry, involve products of multiple coefficients and introduce non-gaussianities into the statistical distribution.

JOURNAL OF HIGH ENERGY PHYSICS (2022)

Article Immunology

A Narrative Review of the Neurological Manifestations of Human Adenosine Deaminase 2 Deficiency

Mariia Dzhus, Lisa Ehlers, Marjon Wouters, Katrien Jansen, Rik Schrijvers, Lien De Somer, Steven Vanderschueren, Marco Baggio, Leen Moens, Benjamin Verhaaren, Rik Lories, Giorgia Bucciol, Isabelle Meyts

Summary: Deficiency of human adenosine deaminase type 2 (DADA2) is a rare autoimmune disorder characterized by vasculopathy, immune dysregulation, and hematologic abnormalities. Neurological manifestations, particularly strokes, are a significant feature of DADA2, with brain stem and deep gray matter being commonly affected. Other neurological involvements include neuropathies, focal deficits, ophthalmological findings, convulsions, and headaches. Recognizing the diverse neurological manifestations of DADA2 is crucial for accurate diagnosis and appropriate management.

JOURNAL OF CLINICAL IMMUNOLOGY (2023)

Article Physics, Multidisciplinary

Quantum hypothesis testing in many-body systems

Jan de Boer, Victor Godet, Jani Kastikainen, Esko Keski-Vakkuri

Summary: A key task in physics is to determine the state of a system through measurements, with quantum hypothesis testing providing a framework to optimize the process. This involves studying quantum many-body systems and field theory to find optimal measurement strategies. Error estimates in distinguishing similar states involve quantities such as the variance of relative entropy.

SCIPOST PHYSICS CORE (2021)

暂无数据