Author(s):
Suresh C. Jaryal†, Nidhi Mankotia, Abhisek Mohapatra, Soumyaranjan Dash, Ayan Chatterjee
Email(s):
nidhimankotia2000@gmail.com , ayan.theory@gmail.com , suresh.fifthd@gmail.com
Address:
Suresh C. Jaryal†1,2, Nidhi Mankotia‡§1, Abhisek Mohapatra¶, Soumyaranjan Dash‖1, Ayan Chatterjee∗1
1Department of Physics and Astronomical Science, Central University of Himachal Pradesh, Dharamshala- 176215, India.
2Department of Physics and Astronomical Sciences, Central University of Jammu, Samba, J&K- 181143, India.
*Corresponding Author
Published In:
Conference Proceeding, Mathematics in Space and Applied Sciences (ICMSAS-2023)
Year of Publication:
March, 2023
Online since:
March 04, 2023
DOI:
Not Available
ABSTRACT:
Gauge theories have constraints among their dynamical variables, and transition from Lagrangian to Hamiltonian formalism in these theories need special care. With the help of the Dirac method of constraint systems, we study the gauge anomaly free Kalb-Ramond field Hµνλ by classifying these constraints in accordance to the Dirac method. The first class constraints are shown to generate the appropriate gauge transformations for the field potential Bµν, given by δBµν = ∂[µλν]. We construct the reduced phase space and show that the Dirac brackets give the fundamental brackets for field quantisation.
Cite this article:
Suresh C. Jaryal†, Nidhi Mankotia, Abhisek Mohapatra, Soumyaranjan Dash, Ayan Chatterjee. Quantization of gauge anomaly free Kalb-Ramond Field. Proceedings of 2nd International Conference on Mathematics in Space and Applied Sciences. 2023;1:185-187.
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