AbstractWe propose a method to experimentally study the equation of state of strongly interacting matter created at the early stage of nucleus–nucleus collisions. The method exploits the relation between relative entropy and energy fluctuations and equation of state. As a measurable quantity, the ratio of properly filtered multiplicity to energy fluctuations is proposed. Within a statistical approach to the early stage of nucleus–nucleus collisions, the fluctuation ratio manifests a non-monotonic collision energy dependence with a maximum in the domain where the onset of deconfinement occurs
Exploration of the phase diagram of Quantum Chromodynamics (QCD) matter is an exciting undertaking t...
International audienceWe exploit the concept of hydrodynamic attractors to establish a macroscopic d...
AbstractIt is demonstrated using Monte Carlo simulation that in different nucleus–nucleus collision ...
AbstractWe propose a method to experimentally study the equation of state of strongly interacting ma...
We propose a method to experimentally study the equation of state of strongly interacting matter cre...
The ratio of properly filtered multiplicity to energy fluctuations is shown to be sensitive to the e...
AbstractWe suggest that the fluctuations of strange hadron multiplicity could be sensitive to the eq...
We suggest that the fluctuations of strange hadron multiplicity could be sensitive to the equation o...
A statistical model of the early stage of central nucleus--nucleus (A+A) collisions is developed. We...
In this work the general theory of first order phase transitions in finite systems is discussed, wit...
12 pages, 8 figuresWe show that in a central nucleus-nucleus collision, the variation of the mean tr...
Heavy-ion collisions at relativistic energies probe matter at extreme conditions of temperatures and...
A statistical model of the early stage of central nucleus-nucleus collisions is developed and confro...
An investigation of strongly interacting matter equation of state remains one of the major tasks of ...
A method to study event-by-event fluctuations of the chemical (particle type) composition of the fin...
Exploration of the phase diagram of Quantum Chromodynamics (QCD) matter is an exciting undertaking t...
International audienceWe exploit the concept of hydrodynamic attractors to establish a macroscopic d...
AbstractIt is demonstrated using Monte Carlo simulation that in different nucleus–nucleus collision ...
AbstractWe propose a method to experimentally study the equation of state of strongly interacting ma...
We propose a method to experimentally study the equation of state of strongly interacting matter cre...
The ratio of properly filtered multiplicity to energy fluctuations is shown to be sensitive to the e...
AbstractWe suggest that the fluctuations of strange hadron multiplicity could be sensitive to the eq...
We suggest that the fluctuations of strange hadron multiplicity could be sensitive to the equation o...
A statistical model of the early stage of central nucleus--nucleus (A+A) collisions is developed. We...
In this work the general theory of first order phase transitions in finite systems is discussed, wit...
12 pages, 8 figuresWe show that in a central nucleus-nucleus collision, the variation of the mean tr...
Heavy-ion collisions at relativistic energies probe matter at extreme conditions of temperatures and...
A statistical model of the early stage of central nucleus-nucleus collisions is developed and confro...
An investigation of strongly interacting matter equation of state remains one of the major tasks of ...
A method to study event-by-event fluctuations of the chemical (particle type) composition of the fin...
Exploration of the phase diagram of Quantum Chromodynamics (QCD) matter is an exciting undertaking t...
International audienceWe exploit the concept of hydrodynamic attractors to establish a macroscopic d...
AbstractIt is demonstrated using Monte Carlo simulation that in different nucleus–nucleus collision ...