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Main Authors: Chen, Qi, Tu, Kaixun, Wang, Qing
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2310.18621
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author Chen, Qi
Tu, Kaixun
Wang, Qing
author_facet Chen, Qi
Tu, Kaixun
Wang, Qing
contents While neutrino oscillations have led to attention and research on field mixing arising from quadratic interactions, the field mixing inherent in clothed particles is more fundamental, serving as a significant source of complexity and non-perturbative challenges in quantum field theory. We present an example of an analytical solution for field mixing involving a three-point interaction between a bosonic field and a fermionic field. Specifically, we study the Rothe-Stamatescu (RS) model and utilize lattice regularization to provide a well-defined Hamiltonian which is absent in the original continuous RS model. Due to the complexity introduced by three-point interactions compared to quadratic interactions, the Fock representation commonly used in discussions of field mixing does not work well; instead, we define a representation based on real space to investigate the physical vacuum and clothed particles. These eigenstates not only reveal the field mixing between the bosonic and fermionic fields but also allow us to directly observe the spatial entanglement structure.
format Preprint
id arxiv_https___arxiv_org_abs_2310_18621
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Hamiltonian formulation of the RS model and field mixing
Chen, Qi
Tu, Kaixun
Wang, Qing
High Energy Physics - Lattice
While neutrino oscillations have led to attention and research on field mixing arising from quadratic interactions, the field mixing inherent in clothed particles is more fundamental, serving as a significant source of complexity and non-perturbative challenges in quantum field theory. We present an example of an analytical solution for field mixing involving a three-point interaction between a bosonic field and a fermionic field. Specifically, we study the Rothe-Stamatescu (RS) model and utilize lattice regularization to provide a well-defined Hamiltonian which is absent in the original continuous RS model. Due to the complexity introduced by three-point interactions compared to quadratic interactions, the Fock representation commonly used in discussions of field mixing does not work well; instead, we define a representation based on real space to investigate the physical vacuum and clothed particles. These eigenstates not only reveal the field mixing between the bosonic and fermionic fields but also allow us to directly observe the spatial entanglement structure.
title Hamiltonian formulation of the RS model and field mixing
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2310.18621