Avoiding Haag's theorem with parameterized quantum field theory

Autor: Seidewitz, Ed
Rok vydání: 2015
Předmět:
Zdroj: Found Phys, 47(3), 355-374 (2017)
Druh dokumentu: Working Paper
DOI: 10.1007/s10701-017-0065-8
Popis: Under the normal assumptions of quantum field theory, Haag's theorem states that any field unitarily equivalent to a free field must itself be a free field. Unfortunately, the derivation of the Dyson series perturbation expansion relies on the use of the interaction picture, in which the interacting field is unitarily equivalent to the free field but must still account for interactions. Thus, the traditional perturbative derivation of the scattering matrix in quantum field theory is mathematically ill defined. Nevertheless, perturbative quantum field theory is currently the only practical approach for addressing scattering for realistic interactions, and it has been spectacularly successful in making empirical predictions. This paper explains this success by showing Haag's Theorem can be avoided when quantum field theory is formulated using an invariant, fifth path parameter in addition to the usual four position parameters, such that the Dyson perturbation expansion for the scattering matrix can still be reproduced. As a result, the parameterized formalism provides a consistent foundation for the interpretation of quantum field theory as used in practice and, perhaps, for better dealing with other mathematical issues.
Comment: RevTex 4; v2: Title changed and early sections significantly re-written to improve parallel with traditional QFT and focus on what is necessary for Haag's Theorem; v3: Shortened and re-written based on a more rigorous underlying formalism; v4: Accepted for publication in Found Phys; v5 Editorial corrections
Databáze: arXiv