One of the main physics goals of the Multi Purpose Detector (MPD) is to investigate hot and dense baryonic matter in heavy ion collisions at NICA energies to search for the possible critical end point (CEP). Since the location of CEP is not clear the entire accessible region of the QCD phase diagram needs to be explored by scanning the full range of available beam energies. In case of CEP existence it can be observed by abnormal fluctuations of various quantities such as net-proton multiplicity. This task requires excellent particle identification (PID) capability over as large as possible phase space volume. The identification of charged hadrons is achieved at the momenta of 0:1 – 3 GeV/c. The results of hadron identification and prelimina...
We develop an innovative and unbiased procedure, based on event mixing, to account for unavoidable c...
The goal of the Multi-Purpose Detector (MPD) experiment at NICA collider is to explore the QCD phase...
The size and evolution of the matter created in relativistic heavy-ion collisions strongly depend on...
One of the main physics goals of the Multi Purpose Detector (MPD) is to investigate hot and dense ba...
The main goal of the NICA/MPD facility is a study of the properties of hot and dense baryonic matter...
The Multi-Purpose Detector (MPD) is to be installed at the Nuclotron Ion Collider fAcility (NICA) of...
The proton-proton collisions have been extensively used as a baseline reference for nucleus-nucleus ...
The Multi-Purpose Detector (MPD) at NICA collider has a substantial discovery potential concerning t...
The project NICA (Nuclotron-based Ion Collider fAcility) aims to study hot and baryon rich QCD matte...
The global scientific goal of the NICA/MPD (Nuclotron-based Ion Collider fAcility/Multy Purpose Detec...
The existence and location of the QCD critical point is an object of both experimental and theoretic...
The project NICA (Nuclotron-based Ion Collider fAcility) is aimed to study hot and dense baryonic ma...
International audienceNew acceleration complex NICA (Nuclotron-based Ion Collider fAcility) as well ...
The exploration of the QCD phase diagram is one of the most exciting and challenging projects of mod...
In heavy-ion collisions in the energy regime probed at the CERN SPS, experimental hints for the deco...
We develop an innovative and unbiased procedure, based on event mixing, to account for unavoidable c...
The goal of the Multi-Purpose Detector (MPD) experiment at NICA collider is to explore the QCD phase...
The size and evolution of the matter created in relativistic heavy-ion collisions strongly depend on...
One of the main physics goals of the Multi Purpose Detector (MPD) is to investigate hot and dense ba...
The main goal of the NICA/MPD facility is a study of the properties of hot and dense baryonic matter...
The Multi-Purpose Detector (MPD) is to be installed at the Nuclotron Ion Collider fAcility (NICA) of...
The proton-proton collisions have been extensively used as a baseline reference for nucleus-nucleus ...
The Multi-Purpose Detector (MPD) at NICA collider has a substantial discovery potential concerning t...
The project NICA (Nuclotron-based Ion Collider fAcility) aims to study hot and baryon rich QCD matte...
The global scientific goal of the NICA/MPD (Nuclotron-based Ion Collider fAcility/Multy Purpose Detec...
The existence and location of the QCD critical point is an object of both experimental and theoretic...
The project NICA (Nuclotron-based Ion Collider fAcility) is aimed to study hot and dense baryonic ma...
International audienceNew acceleration complex NICA (Nuclotron-based Ion Collider fAcility) as well ...
The exploration of the QCD phase diagram is one of the most exciting and challenging projects of mod...
In heavy-ion collisions in the energy regime probed at the CERN SPS, experimental hints for the deco...
We develop an innovative and unbiased procedure, based on event mixing, to account for unavoidable c...
The goal of the Multi-Purpose Detector (MPD) experiment at NICA collider is to explore the QCD phase...
The size and evolution of the matter created in relativistic heavy-ion collisions strongly depend on...