Original study of the theory. Analysis of all orders in and resummations
arXiv:2104.12702 · doi:10.1103/PhysRevD.104.085010
Abstract
In a recent work the Green's functions of the -symmetric scalar theory were calculated at the first order of the logarithmic expansion, i.e. at first order in , and it was proposed to use this expansion in powers of to implement a systematic renormalization of the theory. Using techniques that we recently developed for the analysis of an ordinary (hermitian) scalar theory, in the present work we calculate the Green's functions at , pushing also the analysis to higher orders. We find that, at each finite order in , the theory is non-interacting for any dimension . We then conclude that by no means this expansion can be used for a systematic renormalization of the theory. We are then lead to consider resummations, and we start with the leading contributions. Unfortunately, the results are quite poor. Specifying to the physically relevant model, we show that this resummation simply gives the trivial lowest order results of the weak-coupling expansion. We successively resum subleading diagrams, but again the results are rather poor. All this casts serious doubts on the possibility of studying the theory with the help of such an expansion. We finally add that the findings presented in this work were obtained by us some time ago (December 2019), and we are delighted to see that these results, that we communicated to C.M. Bender in December 2019, are confirmed in a recent preprint (e-Print:2103.07577) of C.M. Bender and collaborators.
29 pages
References in corpus (6)
- Making Sense of Non-Hermitian Hamiltonians
- Spontaneously Breaking Non-Abelian Gauge Symmetry in Non-Hermitian Field Theories
- Critical behavior of the PT-symmetric quantum field theory
- The disappearing operator
- Possible treatment of the Ghost states in the Lee-Wick Standard Model
- Infinitely many inequivalent field theories from one Lagrangian