🔧На сайте запланированы технические работы
25.12.2025 в промежутке с 18:00 до 21:00 по Московскому времени (GMT+3) на сайте будут проводиться плановые технические работы. Возможны перебои с доступом к сайту. Приносим извинения за временные неудобства. Благодарим за понимание!
🔧Site maintenance is scheduled.
Scheduled maintenance will be performed on the site from 6:00 PM to 9:00 PM Moscow time (GMT+3) on December 25, 2025. Site access may be interrupted. We apologize for the inconvenience. Thank you for your understanding!

 

Standard Model in Hamiltonian Approachand Higgs Effect

封面

如何引用文章

全文:

详细

The vector bosons models including Standard Model (SM) are investigated in the framework
of the Dirac Hamiltonian method with explicit resolving the Gauss constraints in order
to eliminate variables with zero momenta and negative energy contribution in accordance
with the spectral postulate of operator quantization. This elimination leads to static interactions
in a frame of reference of the Hamiltonian formulation. We list a set of observational
and theoretical arguments in favor of these static interactions in SM. We show that the
Dirac Hamiltonian method admits the mechanism of spontaneous symmetry breaking in SM
by the initial data of the zeroth Fourier harmonic of the Higgs field that provokes masses
of vector and spinor fields without the Higgs potential of this zeroth harmonic. In this case,
the extremum of the quantum Coleman-Weinberg effective potential obtained from the unit
vacuum-vacuum transition amplitude leads to a new sum-rule for masses of fermions and
bosons and predicts a mass of the Higgs field 250 GeV.

作者简介

V Pervushin

Joint Institute for Nuclear Research

Joint Institute for Nuclear Research

S Shuvalov

Peoples Friendship University of Russia

Peoples Friendship University of Russia

补充文件

附件文件
动作
1. JATS XML