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30 August 2022 to 12 September 2022
Conference venue: OAC conference center, Kolymbari, Crete, Greece. The conference will take place in Crete in physical form, however participation is also possible via internet
Europe/Athens timezone
"Second MODE Workshop on Differentiable Programming for Experiment Design" following after ICNFP2022 (https://indico.cern.ch/event/1145124/)

Spectra of Triply Heavy Baryons

7 Sept 2022, 18:30
1h
Poster presentation High Energy Particle Physics Poster Session

Speaker

Chandni Menapara

Description

Masses of triply charm-bottom baryons are calculated using the hypercentral Constituent Quark Model (hCQM) [1], a basic non-relativistic framework. Constituent Quark Models (CQMs) are widely used to describe the interaction of quarks inside the baryon. Hence, it is preferable to perform within a general framework like hCQM to understand internal quark dynamics. The hCQM is based on the idea of Constituent Quarks and it converts the three body interaction problem to one body interaction by using hypercentral co-ordinates. In the case of triply heavy baryons, it would be very interesting to observe the behavior of heavy quarks with each other inside the baryonic system. The model consists of the hyper Coulomb plus screening potential as confining potential to elaborate hypercentral quark interaction between the constituent quarks. Our predicted masses of radial states 1S - 4S of Ωccb++ and Ωcbb- baryons have been presented, compared with other references [2,3]. Radiative decay calculation is also performed in this work.
References:

[1] A. Kakadiya, Z. Shah, K. Gandhi and A. K. Rai, Few-Body Syst. 63, 29 (2022).

[2] R. N. Faustov and V. O. Galkin, Phys. Rev. D 105, 014013 (2022).

[3] G. Yang et. al., Chin. Phys. C 44 023102 (2020).

Details

Chandni Menapara, PhD Student, Department of Physics, Sardar Vallabhbhai National Institute of Technology, Surat, India
www.svnit.ac.in

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Author

Chandni Menapara

Co-authors

Ajay Kumar Rai (Sardar vallabhbhai National Institute of Technology-Surat) Ms Amee Kakadiya (Sardar Vallabhbhai National Institute of Technology Surat, Gujarat, India)

Presentation materials

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