Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume

Lahiri A, Mukherjee TK, Ray R (2021)
In: 23rd DAE High Energy Physics Symposium. Select Proceedings. Behera PK, Bhatnagar V, Shukla P, Sinha R (Eds); Springer Proceedings in Physics, 261. Singapore: Springer Nature Singapore: 543-549.

Konferenzbeitrag | Veröffentlicht | Englisch
 
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Autor*in
Lahiri, AnirbanUniBi; Mukherjee, Tamal K.; Ray, Rajarshi
Herausgeber*in
Behera, Prafulla Kumar; Bhatnagar, Vipin; Shukla, Prashant; Sinha, Rahul
Abstract / Bemerkung
We study some aspects of the phase transition of the finite size droplets with u and d quarks. We modelled the system through the Polyakov Nambu Jona-Lasinio Model (PNJL) and employ multiple reflection expansion to introduce the finite size effects. We discuss the qualitative behaviour of the order parameters, pressure and susceptibilities. We find increased fluctuations around the transition temperature region due to finite size effects and the fluctuations are more for small system size.
Erscheinungsjahr
2021
Titel des Konferenzbandes
23rd DAE High Energy Physics Symposium. Select Proceedings
Serien- oder Zeitschriftentitel
Springer Proceedings in Physics
Band
261
Seite(n)
543-549
Konferenz
23rd DAE-BRNS High Energy Physics Symposium 2018
Konferenzort
Chennai, India
Konferenzdatum
2018-12-10 – 2018-12-15
ISBN
978-981-33-4407-5
Page URI
https://pub.uni-bielefeld.de/record/2982008

Zitieren

Lahiri A, Mukherjee TK, Ray R. Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume. In: Behera PK, Bhatnagar V, Shukla P, Sinha R, eds. 23rd DAE High Energy Physics Symposium. Select Proceedings. Springer Proceedings in Physics. Vol 261. Singapore: Springer Nature Singapore; 2021: 543-549.
Lahiri, A., Mukherjee, T. K., & Ray, R. (2021). Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume. In P. K. Behera, V. Bhatnagar, P. Shukla, & R. Sinha (Eds.), Springer Proceedings in Physics: Vol. 261. 23rd DAE High Energy Physics Symposium. Select Proceedings (pp. 543-549). Singapore: Springer Nature Singapore. https://doi.org/10.1007/978-981-33-4408-2_75
Lahiri, Anirban, Mukherjee, Tamal K., and Ray, Rajarshi. 2021. “Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume”. In 23rd DAE High Energy Physics Symposium. Select Proceedings, ed. Prafulla Kumar Behera, Vipin Bhatnagar, Prashant Shukla, and Rahul Sinha, 261:543-549. Springer Proceedings in Physics. Singapore: Springer Nature Singapore.
Lahiri, A., Mukherjee, T. K., and Ray, R. (2021). “Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume” in 23rd DAE High Energy Physics Symposium. Select Proceedings, Behera, P. K., Bhatnagar, V., Shukla, P., and Sinha, R. eds. Springer Proceedings in Physics, vol. 261, (Singapore: Springer Nature Singapore), 543-549.
Lahiri, A., Mukherjee, T.K., & Ray, R., 2021. Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume. In P. K. Behera, et al., eds. 23rd DAE High Energy Physics Symposium. Select Proceedings. Springer Proceedings in Physics. no.261 Singapore: Springer Nature Singapore, pp. 543-549.
A. Lahiri, T.K. Mukherjee, and R. Ray, “Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume”, 23rd DAE High Energy Physics Symposium. Select Proceedings, P.K. Behera, et al., eds., Springer Proceedings in Physics, vol. 261, Singapore: Springer Nature Singapore, 2021, pp.543-549.
Lahiri, A., Mukherjee, T.K., Ray, R.: Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume. In: Behera, P.K., Bhatnagar, V., Shukla, P., and Sinha, R. (eds.) 23rd DAE High Energy Physics Symposium. Select Proceedings. Springer Proceedings in Physics. 261, p. 543-549. Springer Nature Singapore, Singapore (2021).
Lahiri, Anirban, Mukherjee, Tamal K., and Ray, Rajarshi. “Study of Phase Transition in Two-Flavour Quark Matter at Finite Volume”. 23rd DAE High Energy Physics Symposium. Select Proceedings. Ed. Prafulla Kumar Behera, Vipin Bhatnagar, Prashant Shukla, and Rahul Sinha. Singapore: Springer Nature Singapore, 2021.Vol. 261. Springer Proceedings in Physics. 543-549.
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