A note on the infrared problem in model field theories
In this note we critically re-examine the usual procedure of quantization of classical wave equations with static sources. We point out that the origin of infrared difficulties in the so called van Hove model is related to the complex Hilbert space structure one puts on the classical phase space and...
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doaj-1c1769b97765436a80968d2c386abbcf2020-11-25T01:49:19ZengSapienza Università EditriceRendiconti di Matematica e delle Sue Applicazioni1120-71832532-33502018-01-0139217228A note on the infrared problem in model field theoriesMassimo BertiniDiego Noja0Andrea Posilicano1Department of Mathematics and its Applications, University of Milano-BicoccaDiSAT, University of InsubriaIn this note we critically re-examine the usual procedure of quantization of classical wave equations with static sources. We point out that the origin of infrared difficulties in the so called van Hove model is related to the complex Hilbert space structure one puts on the classical phase space and the corresponding unitarization of the classical symplectic evolution. Whereas in the usual framework the condition of infrared regularity forces the total charge of the external source to vanish, in our setting the infrared regularity condition is equivalent to having a source with a finite (electrostatic) energy. A similar analysis could be applied to models of field-particle interaction such as the Nelson model.http://www1.mat.uniroma1.it/ricerca/rendiconti/39_2_(2018)_217-228.htmlQuantum fieldsInfrared divergence |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Massimo Bertini Diego Noja Andrea Posilicano |
spellingShingle |
Massimo Bertini Diego Noja Andrea Posilicano A note on the infrared problem in model field theories Rendiconti di Matematica e delle Sue Applicazioni Quantum fields Infrared divergence |
author_facet |
Massimo Bertini Diego Noja Andrea Posilicano |
author_sort |
Massimo Bertini |
title |
A note on the infrared problem in model field theories |
title_short |
A note on the infrared problem in model field theories |
title_full |
A note on the infrared problem in model field theories |
title_fullStr |
A note on the infrared problem in model field theories |
title_full_unstemmed |
A note on the infrared problem in model field theories |
title_sort |
note on the infrared problem in model field theories |
publisher |
Sapienza Università Editrice |
series |
Rendiconti di Matematica e delle Sue Applicazioni |
issn |
1120-7183 2532-3350 |
publishDate |
2018-01-01 |
description |
In this note we critically re-examine the usual procedure of quantization of classical wave equations with static sources. We point out that the origin of infrared difficulties in the so called van Hove model is related to the complex Hilbert space structure one puts on the classical phase space and the corresponding unitarization of the classical symplectic evolution. Whereas in the usual framework the condition of infrared regularity forces the total charge of the external source to vanish, in our setting the infrared regularity condition is equivalent to having a source with a finite (electrostatic) energy. A similar analysis could be applied to models of field-particle interaction such as the Nelson model. |
topic |
Quantum fields Infrared divergence |
url |
http://www1.mat.uniroma1.it/ricerca/rendiconti/39_2_(2018)_217-228.html |
work_keys_str_mv |
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1725007335065124864 |