QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY

Bose-Einstein correlations of identical particles reveal the shape and size of the particle emitting source of the given boson. These correlations are pivotal for a better understanding of the source dynamics and developing techniques to examine the propagation of quantum chaos in the presence of co...

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Main Authors: Bary, G., Ahmed, W., Ahmad, R., Ching, D.L.C., Mousa, A.A.A., Khan, I.
Format: Article
Published: World Scientific 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85133830167&doi=10.1142%2fS0218348X22401867&partnerID=40&md5=6de69ba77204d6b8d0ad2753033c1845
http://eprints.utp.edu.my/33384/
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spelling my.utp.eprints.333842022-07-26T08:45:34Z QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY Bary, G. Ahmed, W. Ahmad, R. Ching, D.L.C. Mousa, A.A.A. Khan, I. Bose-Einstein correlations of identical particles reveal the shape and size of the particle emitting source of the given boson. These correlations are pivotal for a better understanding of the source dynamics and developing techniques to examine the propagation of quantum chaos in the presence of coherence at a certain temperature and momentum. Femtoscopy is of the utmost importance during this transformation for data processing and coherence-chaos analysis discrepancies. We introduced an evolving source to describe chaotic information inside quantum entanglement and the impact of the coherence order is discussed in this research. We also investigate the role of source size parameter and particle number in the dynamics of the temperature profiles with the function of momentum variation. The influences of the modeling factors on the correlations with their normalized correlator in the perspective of source coherence have been evaluated and the orientation of the source has an effect on the diffusivity of the fluid under consideration. Such consequences can cause an increase or decrease the genuine correlations due to the distributions of velocity and temperature. The main findings of the paper have been illustrated using the graphical representations of the considered correlations according to the geometry of the expanding source. Such results reveal the lucrativeness in the field of engineering applications. © The Author(s). World Scientific 2022 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85133830167&doi=10.1142%2fS0218348X22401867&partnerID=40&md5=6de69ba77204d6b8d0ad2753033c1845 Bary, G. and Ahmed, W. and Ahmad, R. and Ching, D.L.C. and Mousa, A.A.A. and Khan, I. (2022) QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY. Fractals . http://eprints.utp.edu.my/33384/
institution Universiti Teknologi Petronas
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description Bose-Einstein correlations of identical particles reveal the shape and size of the particle emitting source of the given boson. These correlations are pivotal for a better understanding of the source dynamics and developing techniques to examine the propagation of quantum chaos in the presence of coherence at a certain temperature and momentum. Femtoscopy is of the utmost importance during this transformation for data processing and coherence-chaos analysis discrepancies. We introduced an evolving source to describe chaotic information inside quantum entanglement and the impact of the coherence order is discussed in this research. We also investigate the role of source size parameter and particle number in the dynamics of the temperature profiles with the function of momentum variation. The influences of the modeling factors on the correlations with their normalized correlator in the perspective of source coherence have been evaluated and the orientation of the source has an effect on the diffusivity of the fluid under consideration. Such consequences can cause an increase or decrease the genuine correlations due to the distributions of velocity and temperature. The main findings of the paper have been illustrated using the graphical representations of the considered correlations according to the geometry of the expanding source. Such results reveal the lucrativeness in the field of engineering applications. © The Author(s).
format Article
author Bary, G.
Ahmed, W.
Ahmad, R.
Ching, D.L.C.
Mousa, A.A.A.
Khan, I.
spellingShingle Bary, G.
Ahmed, W.
Ahmad, R.
Ching, D.L.C.
Mousa, A.A.A.
Khan, I.
QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY
author_facet Bary, G.
Ahmed, W.
Ahmad, R.
Ching, D.L.C.
Mousa, A.A.A.
Khan, I.
author_sort Bary, G.
title QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY
title_short QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY
title_full QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY
title_fullStr QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY
title_full_unstemmed QUANTUM STATISTICAL PERSPECTIVE TO EXAMINE THE SOURCE CHAOS FRACTION THROUGH BOSON FEMTOSCOPY
title_sort quantum statistical perspective to examine the source chaos fraction through boson femtoscopy
publisher World Scientific
publishDate 2022
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85133830167&doi=10.1142%2fS0218348X22401867&partnerID=40&md5=6de69ba77204d6b8d0ad2753033c1845
http://eprints.utp.edu.my/33384/
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