Contribution to a conference proceedings GSI-2017-00992

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png
The Compressed Baryonic Matter (CBM) experiment at FAIR

 ;

2016

24th International Workshop on Deep-Inelastic Scattering and Related Subjects, DIS 2016, HamburgHamburg, Germany, 11 Apr 2016 - 15 Apr 20162016-04-112016-04-15 1 - 5 ()

Abstract: The CBM experiment will investigate highly compressed baryonic matter created in A+A colli- sions at the new FAIR accelerator. With a beam energy range up to 11 AGeV for the heaviest nuclei at the SIS 100 accelerator, CBM will investigate the QCD phase diagram in the intermedi- ate range, i.e. at moderate temperatures but high net-baryon densities. This research program is thus complementary to the studies performed at the high-energy accelerators LHC and RHIC and is of particular interest because, compared to the high energy case, the strongly interacting matter created here is expected to have very different characteristics due to the high net-baryon densities. Different to the crossover between partonic and hadronic matter seen at low net-baryon densities, a first order phase transition ending in a critical point and possibly new high-density phases of strongly interacting matter are expected. In this range of the QCD phase diagram only exploratory measurements have been performed so far. CBM, as a second generation, high-luminosity experiment, will substantially improve our knowledge of matter created in this region of the QCD phase diagram and characterize its prop- erties by measuring rare probes such as multi-strange hyperons, dileptons or charm, but also with event-by-event fluctuations of conserved quantities, and collective flow of identified particles. Due to the unprecedented reaction rates CBM has a high discovery potential. The experimental preparations in terms of detector development, feasibility studies and fast track reconstruction are progressing well such that CBM will be ready with the FAIR start. Several detector components will even be used in other heavy-ion components prior to FAIR start substantially enhancing their physics potential.

Keyword(s): activity report ; quantum chromodynamics: critical phenomena ; particle flow: collective phenomena ; CBM ; baryon: density


Contributing Institute(s):
  1. CBM (CBM)
  2. Collaboration FAIR: CBM (CBM@FAIR)
Research Program(s):
  1. 612 - Cosmic Matter in the Laboratory (POF3-612) (POF3-612)
  2. SUC-GSI-Giessen - Strategic university cooperation GSI-U Gießen (SUC-GSI-GI) (SUC-GSI-GI)
  3. GSIRU1 - Temporaeres Feld POF4 : research unit 1 (GSIRU1) (GSIRU1)
Experiment(s):
  1. (Facility Altdaten therefore no facility)

Appears in the scientific report 2016
Click to display QR Code for this record

The record appears in these collections:
Private Institute collections > >WGF > >RED > >CBK > CBM
Document types > Events > Contributions to a conference proceedings
Workflow collections > Public records
HQM/MU > CBM
Publications database

 Record created 2017-07-06, last modified 2023-03-17