On the BRST Quantization of the Massless Bosonic Particle in Twistor-Like Formulation

Author:

Bandos Igor1,Maznytsia Alexey2,Rudychev Igor2,Sorokin Dmitri3

Affiliation:

1. Kharkov Institute of Physics and Technology, 310108, Kharkov, Ukraine

2. Department of Physics and Technology, Kharkov State University, 310108, Kharkov, Ukraine

3. Università Degli Studi Di Padova Dipartimento Di Fisica "Galileo Galilei" ed INFN, Sezione Di Padova Via F. Marzolo, 8, 35131 Padova, Italy

Abstract

We study some features of bosonic-particle path-integral quantization in a twistor-like approach by the use of the BRST–BFV-quantization prescription. In the course of the Hamiltonian analysis we observe links between various formulations of the twistor-like particle by performing a conversion of the Hamiltonian constraints of one formulation to another. A particular feature of the conversion procedure applied to turn the second-class constraints into first-class constraints is that the simplest Lorentz-covariant way to do this is to convert a full mixed set of the initial first- and second-class constraints rather than explicitly extracting and converting only the second-class constraints. Another novel feature of the conversion procedure applied below is that in the case of the D = 4 and D = 6 twistor-like particle the number of new auxiliary Lorentz-covariant coordinates, which one introduces to get a system of first-class constraints in an extended phase space, exceeds the number of independent second-class constraints of the original dynamical system. We calculate the twistor-like particle propagator in D = 3,4,6 space–time dimensions and show that it coincides with that of a conventional massless bosonic particle.

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

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