PPT-Heavy Ion Collisions Beyond the “Dilute Projectile” Limit
Author : mrsimon | Published Date : 2020-08-04
Yuri Kovchegov The Ohio State University based on work in collaboration with G Chirilli and D Wertepny arXiv150103106 hepph Outline Introduction classical
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Heavy Ion Collisions Beyond the “Dilute Projectile” Limit: Transcript
Yuri Kovchegov The Ohio State University based on work in collaboration with G Chirilli and D Wertepny arXiv150103106 hepph Outline Introduction classical gluon production problem in AA collisions and why it is important. interesting ?. Interaction of heavy quarks with the plasma. . - . our model (elastic and inelastic collisions, LPM). . - comparison with data. . - how far we are with our understanding. . P. é. ter. Petreczky. . . Bielefeld, July 2013. Study of the strongly interacting matter and its new . “phases”. Past: . AGS, SPS, . E. cm. =(1-17) . Cross Sections and Collision Geometry. The . cross . section: Experimental Meaning. Scattering Experiment. Monoenergetic. particle beam. Beam impinges on a target. Particles are scattered by target. He came from traditional nuclear physics, and is one of the few I know who made the transition to high energy heavy ion physics with a modern perspective.. People fall into three categories:. Those who make things happen.. . decays. L. Littenberg. (work mainly done by. A.T.Shaikhiev. . INR RAS. ). HQL-2016. 2. Outline. Motivation. Previous heavy neutrino searches. Experiment BNL-E949. Selection criteria. Efficiency and background study. . AGS. . -- . Heavy . Ion . P. rograms. Hideki Hamagaki. (. hamagaki_hideki@pilot.nias.ac.jp. ). Institute for Innovative Science and Technology. Nagasaki Institute of Applied Science. Contents. Introduction. PlasMA. Nonequilibrium. Dynamics. in Astrophysics and Material Science. YITP, Kyoto, Japan, Oct. 31-Nov. 3, 2011. Tetsufumi. Hirano. Sophia Univ./. the Univ. of Tokyo. Outline. Introduction. Physics of the quark gluon plasma. Tennis ball. Golf ball. Football. Softball. Soccer ball. Bullet. Hockey puck. Basketball. Volleyball. Arrow. Shot put. Javelin. These are all examples of things that are . projected. , then go off under the . W. A. Horowitz. The Ohio State University. February 23, 2010. 16-Nov-10. 1. UCT Seminar. With many thanks to Brian Cole, . Miklos. . Gyulassy. , Ulrich Heinz, and Yuri . Kovchegov. Introduction. What is a heavy ion collision?. Collisions. @ LHC ++. 1. One. central ALICE event for . Pb+Pb @ 2.76 . TeV.A. => E(. kin_total. )= 574 GeV . 0-5% central: . 25000 . particles. Relativistic. AA . and. . eA. . Collisions. 2. “versus” AdS/CFT. Perils, Pitfalls, Progress, Prospects. W.A. . Zajc. Physics Department. Columbia University, New York, NY. . ( . this talk available . at . http://. www.phenix.bnl.gov/phenix/WWW/publish/zajc/sp/presentations/Durham. with heavy-ions. Hou. . Keong. (Tim) Lou,. Simon . Knapen. , . Tongyan. Lin and Tom Melia. PhysRevLett.118.171801. a. Pb. Light Dark Matter 2017. *Disclaimer: Not Dark Matter! Sorry!. “Light”? “Dark”? . Bedanga. Mohanty. NISER. (For STAR Collaboration). Based on STAR: . arXiv. : 1701.07065 . 01/20. Goals of Heavy-Ion Collision. Find out the phase structure of QCD phase . d. iagram . e. xperimentally. . Ralf Rapp. . Cyclotron Institute + . Dept of Phys & Astro. Texas A&M University. College Station, TX, USA. rapp@comp.tamu.edu. Physics Opportunities with . Quarkonia. at the EIC.
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