Title
Theoretical predictions of highly energetic particles energy loss in quark-gluon plasma
Creator
Blagojević, Bojana N., 1984- 21495143
Copyright date
2018
Object Links
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Autorstvo-Nekomercijalno-Bez prerade 3.0 Srbija (CC BY-NC-ND 3.0)
License description
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Language
English
Cobiss-ID
Theses Type
Doktorska disertacija
description
Datum odbrane: 27.12.2018.
Other responsibilities
mentor
Đorđević, Magdalena, 1976- 22283623
član komisije
Radovanović, Voja, 1967- 12747623
član komisije
Adžić, Petar, 1950- 13671783
Academic Expertise
Prirodno-matematičke nauke
Academic Title
-
University
Univerzitet u Beogradu
Faculty
Fizički fakultet
Alternative title
Теоријска предвиђања губитака енергије високо енергијских честица у кварк-глуонској плазми.
Publisher
[B. N. Blagojević]
Format
XXV, 182 listova
description
Physics - High-energy and nuclear physics / Fizika - Nuklearna fizika
Abstract (en)
Today, it is considered that the reached collision energies in the ultra-relativistic
heavy ion collisions (HIC) at the RHIC and the LHC are sufficiently high for the new
state of matter − quark-gluon plasma (QGP), consisting of liberated quarks, antiquarks
and gluons, to be created under controlled experimental conditions. Upon
establishing that QGP is created, one of the main goals of heavy ion program at the
RHIC and the LHC is understanding the properties of newly created state of matter.
Thus created QGP is constituted of low-energetic particles, which represent 99.9%
of quarks and gluons created in ultra-relativistic HIC. The remaining 0.1% are
high-energy particles (tomographic probes), which are the subject of this thesis...
Authors Key words
heavy-ion collisions, parton’s energy loss, suppression, high p? particle,
beyond soft-gluon approximation, nuclear modification factor
Type
Tekst
Abstract (en)
Today, it is considered that the reached collision energies in the ultra-relativistic
heavy ion collisions (HIC) at the RHIC and the LHC are sufficiently high for the new
state of matter − quark-gluon plasma (QGP), consisting of liberated quarks, antiquarks
and gluons, to be created under controlled experimental conditions. Upon
establishing that QGP is created, one of the main goals of heavy ion program at the
RHIC and the LHC is understanding the properties of newly created state of matter.
Thus created QGP is constituted of low-energetic particles, which represent 99.9%
of quarks and gluons created in ultra-relativistic HIC. The remaining 0.1% are
high-energy particles (tomographic probes), which are the subject of this thesis...
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