Our program is an investigation of the hadronization process through measurement of rare particle production in high energy nuclear interactions. Such collisions of heavy nuclei provide an environment similar in energy density to the conditions in the Big Bang. We are currently involved in two major experiments to study this environment, E896 at the AGS and STAR at RHIC. We have completed our physics running of E896, a search for the H dibaryon and measurement of hyperon production in AuAu collisions, and are in the process of analyzing the data. We have produced the electronics and software for the STAR trigger and will begin to use these tools to search for anti-nuclei and strange hadrons when RHIC turns on later this year
An overview of the STAR experiment at the Relativistic Heavy Ion Collider is presented. The experime...
Ultra-relativistic heavy-ion collision produces an extremely hot and dense medium of de-confined qua...
The Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Laboratory will collide beams of n...
The program is an investigation of the hadronization process through experimental measurement of rar...
An overview of the strangeness measurements made by the STAR collaboration at RHIC for Au-Au collisi...
9 pages, 8 figures, Proceedings of the XLI International Winter Meeting on Nuclear Physics, Bormio (...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
We will present a review of selected results on strange baryon production from nucleus-nucleus colli...
The Relativistic Heavy Ion Collider (RHIC) studies nuclear matter under a variety of conditions. Col...
Collisions of heavy ions at RHIC are expected to exceed the energy densities required to achieve a p...
The STAR experiment at the Relativistic Heavy-Ion Collider has performed measurements of high transv...
The study of the production of charged particles at high transverse momenta plays an important role ...
Strange particle production is an important experimental observable that allows the study of the str...
Ultra-relativistic heavy-ion experiments at RHIC and LHC were presented. The production of charged p...
Heavy ion collisions are an ideal tool to explore the QCD phase diagram. The goal is to study the eq...
An overview of the STAR experiment at the Relativistic Heavy Ion Collider is presented. The experime...
Ultra-relativistic heavy-ion collision produces an extremely hot and dense medium of de-confined qua...
The Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Laboratory will collide beams of n...
The program is an investigation of the hadronization process through experimental measurement of rar...
An overview of the strangeness measurements made by the STAR collaboration at RHIC for Au-Au collisi...
9 pages, 8 figures, Proceedings of the XLI International Winter Meeting on Nuclear Physics, Bormio (...
Recent experimental results obtained in STAR experiment at the Relativistic heavy-ion collider (RHIC...
We will present a review of selected results on strange baryon production from nucleus-nucleus colli...
The Relativistic Heavy Ion Collider (RHIC) studies nuclear matter under a variety of conditions. Col...
Collisions of heavy ions at RHIC are expected to exceed the energy densities required to achieve a p...
The STAR experiment at the Relativistic Heavy-Ion Collider has performed measurements of high transv...
The study of the production of charged particles at high transverse momenta plays an important role ...
Strange particle production is an important experimental observable that allows the study of the str...
Ultra-relativistic heavy-ion experiments at RHIC and LHC were presented. The production of charged p...
Heavy ion collisions are an ideal tool to explore the QCD phase diagram. The goal is to study the eq...
An overview of the STAR experiment at the Relativistic Heavy Ion Collider is presented. The experime...
Ultra-relativistic heavy-ion collision produces an extremely hot and dense medium of de-confined qua...
The Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Laboratory will collide beams of n...