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High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation

Hamiltonian Truncation (a.k.a. Truncated Spectrum Approach) is an efficient numerical technique to solve strongly coupled QFTs in d = 2 spacetime dimensions. Further theoretical developments are needed to increase its accuracy and the range of applicability. With this goal in mind, here we present a...

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Autores principales: Elias-Miro, Joan, Rychkov, Slava, Vitale, Lorenzo G.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP10(2017)213
http://cds.cern.ch/record/2271318
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author Elias-Miro, Joan
Rychkov, Slava
Vitale, Lorenzo G.
author_facet Elias-Miro, Joan
Rychkov, Slava
Vitale, Lorenzo G.
author_sort Elias-Miro, Joan
collection CERN
description Hamiltonian Truncation (a.k.a. Truncated Spectrum Approach) is an efficient numerical technique to solve strongly coupled QFTs in d = 2 spacetime dimensions. Further theoretical developments are needed to increase its accuracy and the range of applicability. With this goal in mind, here we present a new variant of Hamiltonian Truncation which exhibits smaller dependence on the UV cutoff than other existing implementations, and yields more accurate spectra. The key idea for achieving this consists in integrating out exactly a certain class of high energy states, which corresponds to performing renormalization at the cubic order in the interaction strength. We test the new method on the strongly coupled two-dimensional quartic scalar theory. Our work will also be useful for the future goal of extending Hamiltonian Truncation to higher dimensions d ≥ 3.
id cern-2271318
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22713182023-10-04T08:12:34Zdoi:10.1007/JHEP10(2017)213http://cds.cern.ch/record/2271318engElias-Miro, JoanRychkov, SlavaVitale, Lorenzo G.High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncationcond-mat.str-elhep-thParticle Physics - TheoryHamiltonian Truncation (a.k.a. Truncated Spectrum Approach) is an efficient numerical technique to solve strongly coupled QFTs in d = 2 spacetime dimensions. Further theoretical developments are needed to increase its accuracy and the range of applicability. With this goal in mind, here we present a new variant of Hamiltonian Truncation which exhibits smaller dependence on the UV cutoff than other existing implementations, and yields more accurate spectra. The key idea for achieving this consists in integrating out exactly a certain class of high energy states, which corresponds to performing renormalization at the cubic order in the interaction strength. We test the new method on the strongly coupled two-dimensional quartic scalar theory. Our work will also be useful for the future goal of extending Hamiltonian Truncation to higher dimensions d ≥ 3.Hamiltonian Truncation (a.k.a. Truncated Spectrum Approach) is an efficient numerical technique to solve strongly coupled QFTs in d=2 spacetime dimensions. Further theoretical developments are needed to increase its accuracy and the range of applicability. With this goal in mind, here we present a new variant of Hamiltonian Truncation which exhibits smaller dependence on the UV cutoff than other existing implementations, and yields more accurate spectra. The key idea for achieving this consists in integrating out exactly a certain class of high energy states, which corresponds to performing renormalization at the cubic order in the interaction strength. We test the new method on the strongly coupled two-dimensional quartic scalar theory. Our work will also be useful for the future goal of extending Hamiltonian Truncation to higher dimensions d >= 3.arXiv:1706.06121CERN-TH-2017-132oai:cds.cern.ch:22713182017-06-19
spellingShingle cond-mat.str-el
hep-th
Particle Physics - Theory
Elias-Miro, Joan
Rychkov, Slava
Vitale, Lorenzo G.
High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation
title High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation
title_full High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation
title_fullStr High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation
title_full_unstemmed High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation
title_short High-Precision Calculations in Strongly Coupled Quantum Field Theory with Next-to-Leading-Order Renormalized Hamiltonian Truncation
title_sort high-precision calculations in strongly coupled quantum field theory with next-to-leading-order renormalized hamiltonian truncation
topic cond-mat.str-el
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP10(2017)213
http://cds.cern.ch/record/2271318
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AT rychkovslava highprecisioncalculationsinstronglycoupledquantumfieldtheorywithnexttoleadingorderrenormalizedhamiltoniantruncation
AT vitalelorenzog highprecisioncalculationsinstronglycoupledquantumfieldtheorywithnexttoleadingorderrenormalizedhamiltoniantruncation