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Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories

We discuss second quantization, discrete symmetry transformations, and inner products in free non-Hermitian scalar quantum field theories with PT symmetry, focusing on a prototype model of two complex scalar fields with anti-Hermitian mass mixing. Whereas the definition of the inner product is uniqu...

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Detalles Bibliográficos
Autores principales: Alexandre, Jean, Ellis, John, Millington, Peter
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.102.125030
http://cds.cern.ch/record/2722398
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author Alexandre, Jean
Ellis, John
Millington, Peter
author_facet Alexandre, Jean
Ellis, John
Millington, Peter
author_sort Alexandre, Jean
collection CERN
description We discuss second quantization, discrete symmetry transformations, and inner products in free non-Hermitian scalar quantum field theories with PT symmetry, focusing on a prototype model of two complex scalar fields with anti-Hermitian mass mixing. Whereas the definition of the inner product is unique for theories described by Hermitian Hamiltonians, its formulation is not unique for non-Hermitian Hamiltonians. Energy eigenstates are not orthogonal with respect to the conventional Dirac inner product, so we must consider additional discrete transformations to define a positive-definite norm. We clarify the relationship between canonical-conjugate operators and introduce the additional discrete symmetry C′, previously introduced for quantum-mechanical systems, and show that the C′PT inner product does yield a positive-definite norm, and hence is appropriate for defining the Fock space in non-Hermitian models with PT symmetry in terms of energy eigenstates. We also discuss similarity transformations between PT-symmetric non-Hermitian scalar quantum field theories and Hermitian theories, showing that they would require modification in the presence of interactions. As an illustration of our discussion, we compare particle mixing in a Hermitian theory and in the corresponding non-Hermitian model with PT symmetry, showing how the latter maintains unitarity and exhibits mixing between scalar and pseudoscalar bosons.
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spelling cern-27223982023-10-04T07:38:46Zdoi:10.1103/PhysRevD.102.125030http://cds.cern.ch/record/2722398engAlexandre, JeanEllis, JohnMillington, PeterDiscrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theoriesquant-phGeneral Theoretical Physicshep-thParticle Physics - TheoryWe discuss second quantization, discrete symmetry transformations, and inner products in free non-Hermitian scalar quantum field theories with PT symmetry, focusing on a prototype model of two complex scalar fields with anti-Hermitian mass mixing. Whereas the definition of the inner product is unique for theories described by Hermitian Hamiltonians, its formulation is not unique for non-Hermitian Hamiltonians. Energy eigenstates are not orthogonal with respect to the conventional Dirac inner product, so we must consider additional discrete transformations to define a positive-definite norm. We clarify the relationship between canonical-conjugate operators and introduce the additional discrete symmetry C′, previously introduced for quantum-mechanical systems, and show that the C′PT inner product does yield a positive-definite norm, and hence is appropriate for defining the Fock space in non-Hermitian models with PT symmetry in terms of energy eigenstates. We also discuss similarity transformations between PT-symmetric non-Hermitian scalar quantum field theories and Hermitian theories, showing that they would require modification in the presence of interactions. As an illustration of our discussion, we compare particle mixing in a Hermitian theory and in the corresponding non-Hermitian model with PT symmetry, showing how the latter maintains unitarity and exhibits mixing between scalar and pseudoscalar bosons.We discuss second quantization, discrete symmetry transformations and inner products in free non-Hermitian scalar quantum field theories with PT symmetry, focusing on a prototype model of two complex scalar fields with anti-Hermitian mass mixing. Whereas the definition of the inner product is unique for theories described by Hermitian Hamiltonians, its formulation is not unique for non-Hermitian Hamiltonians. Energy eigenstates are not orthogonal with respect to the conventional Dirac inner product, so we must consider additional discrete transformations to define a positive-definite norm. We clarify the relationship between canonical-conjugate operators and introduce the additional discrete symmetry C', previously introduced for quantum-mechanical systems, and show that the C'PT inner product does yield a positive-definite norm, and hence is appropriate for defining the Fock space in non-Hermitian models with PT symmetry in terms of energy eigenstates. We also discuss similarity transformations between PT-symmetric non-Hermitian scalar quantum field theories and Hermitian theories, showing that they would require modification in the presence of interactions. As an illustration of our discussion, we compare particle mixing in a Hermitian theory and in the corresponding non-Hermitian model with PT symmetry, showing how the latter maintains unitarity and exhibits mixing between scalar and pseudoscalar bosons.arXiv:2006.06656KCL-PH-TH/2020-19CERN-TH-2020-063oai:cds.cern.ch:27223982020-06-11
spellingShingle quant-ph
General Theoretical Physics
hep-th
Particle Physics - Theory
Alexandre, Jean
Ellis, John
Millington, Peter
Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories
title Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories
title_full Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories
title_fullStr Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories
title_full_unstemmed Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories
title_short Discrete spacetime symmetries and particle mixing in non-Hermitian scalar quantum field theories
title_sort discrete spacetime symmetries and particle mixing in non-hermitian scalar quantum field theories
topic quant-ph
General Theoretical Physics
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.102.125030
http://cds.cern.ch/record/2722398
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AT millingtonpeter discretespacetimesymmetriesandparticlemixinginnonhermitianscalarquantumfieldtheories