Identified hadron production in d+Au and p+p collisions at RHIC

Slides:



Advertisements
Similar presentations
Results from BRAHMS experiment at RHIC Pawel Staszel Niels Bohr Institute for the BRAHMS Collaboration.
Advertisements

RHIC AGS Users Meeting 12 May BRAHMS Highlights Ramiro Debbe for the BRAHMS collaboration Physics Department.
High p T Suppression at Forward Rapidities Catalin Ristea Niels Bohr Institute, Copenhagen for the BRAHMS Collaboration XXXV International Symposium on.
June 17, 2003NN2003, Moscow, Jens Jørgen Gaardhøje, Niels Bohr Institute1 n100 AGeV AGeV Au+Au Ecm =  s  40 TeV THE LITTLE BIG BANG and search.
June 17, 2003NN2003, Moscow, Jens Jørgen Gaardhøje, Niels Bohr Institute1 n100 AGeV AGeV Au+Au Ecm =  s  40 TeV THE LITTLE BIG BANG and search.
Pawan Kumar NetrakantiPANIC-2005, Santa Fe1 Pion, proton and anti-proton transverse momentum spectra in p+p and d+Au collisions at  s NN = 200 GeV Outline:
Michael Murray1 Global Detectors Flavor Dynamics Michael Murray for BRAHMS C. Arsene 12, I. G. Bearden 7, D. Beavis 1, S. Bekele 12, C. Besliu 10, B. Budick.
Particle Production in p + p Reactions at GeV K. Hagel Cyclotron Institute Texas A & M University for the BRAHMS Collaboration.
Baryon-to-meson production in a wide range of baryo-chemical potential at RHIC Paweł Staszel, Marian Smoluchowski Institute of Physics Jagiellonian University.
Transverse and Longitudinal Dynamics at RHIC Paweł Staszel, Marian Smoluchowski Institute of Physics Jagiellonian University SQM 2007 Levo č a, 24–
Quark Matter 2008, Jaipur. Outline February 9, 2008Quark Matter Results –dN/dy –Stopping Results –dN/dy –Stopping Summary and discussion Experiment.
Baryon-to-meson production in a wide range of baryo-chemical potential at RHIC Paweł Staszel, Marian Smoluchowski Institute of Physics Jagiellonian University.
STAR Patricia Fachini QM20081 ρ 0 Production at High p T in Central Au+Au and p+p collisions at  s NN = 200 GeV in STAR STAR Patricia Fachini Brookhaven.
1 Mar. 26 SQM2006 J.H. Lee (BNL) Recent Results from BRAHMS J.H. Lee Physics Department Brookhaven National Laboratory For the Collaboration March
Phases of matter in the BRAHMS experiment Paweł Staszel, Marian Smoluchowski Institute of Physics Jagiellonian University for the BRAHMS Collaboration.
Winter Workshop, Big Sky, February 121 Flemming Videbaek Physics Department, BNL What did we learn from 200 and 62 GeV pp collisions at RHIC ? A BRAHMS.
J.H. Lee BNL Correlations Fest, June 2002, BNL HBT in BRAHMS.
H. Ito University of Kansas For the BRAHMS Collaboration The BRAHMS Institutions 1 Brookhaven National Laboratory, Upton, NY 11973, U.S.A. 2 Institut de.
P + p at 200 GeV K. Hagel Cyclotron Institute, Texas A & M for the BRAHMS Collaboration The spectrometers Particle antiparticle ratios –  s dependence.
BRAHMS High p T Results from the BRAHMS Experiment Zhongbao Yin Department of Physics, University of Bergen for the BRAHMS Collaboration.
1 Nov. 15 QM2006 Shanghai J.H. Lee (BNL) Nuclear Induced Particle Suppression at Large-x F at RHIC J.H. Lee Physics Department Brookhaven National Laboratory.
BRAHMS 16. August 2004 ICHEP04 Beijing, Kina I.G.Bearden, Niels Bohr Institute 1 BRAHMS Particle Production at Forward Rapidities with BRAHMS I.G. Bearden,
Transverse dynamics at y=0 in BRAHMS Bjørn H. Samset Transverse dynamics at RHIC, March 2003 A story of centrality dependent pt spectra of identified charged.
Recent Results from the BRAHMS Experiment at RHIC Paweł Staszel, Jagellonian University for the BRAHMS Collaboration Eighth Workshop on Non-Perturbative.
1 April 21 DIS2006 J.H. Lee (BNL) SSA in BRAHMS J.H. Lee (BNL) for BRAHMS Collaboration DIS2006, Tsukuba, April 2006 Short Introduction Preliminary results.
20-26 Feb Lake Louise Eun-Joo Kim Parton energy loss, saturation, and recombination at BRAHMS Eun-Joo Kim University of Kansas For the BRAHMS collaboration.
Fouad RAMI Institut Pluridisciplinaire Hubert Curien, Strasbourg  Introduction  The BRAHMS Experiment  Overview of Main Results  Bulk observables.
BRAHMS 22. Oktober 2004 Forward Physics Workshop, KU I.G.Bearden, Niels Bohr Institute 1 BRAHMS Particle Production Studied with BRAHMS I.G. Bearden, Niels.
1 Physics at forward rapidities How well does pQCD work p+p at 200 and 62 GeV Probing the initial condition d+Au collisions at 200 GeV Final state effects.
QM 2009, Knoxville1 Forward-Rapidity Azimuthal and Radial Flow of Identified Particles for = 200 GeV Au+Au and Cu+Cu Collisions S.J. Sanders (U. Kansas)
2nd International Workshop on the critical point and the onset of deconfinement Charged mesons in Au+Au interactions at 62.4 AGeV Ionut Arsene for the.
Rapidity Dependence of Charged Hadron Yields in Central Au+Au Collisions at 200 GeV Djamel Ouerdane Niels Bohr Institute for the BRAHMS Collaboration Quark.
BRAH Broad RAnge Hadron MS Magnetic Spectrometers 2.3° 30° 90° 30° The BRAHMS HI and Spin Programs S. J. Sanders U. Kansas.
Charged-particle pseudorapidity densities in d-Au collisions at  s=200GeV/A Hironori Ito Brookhaven National Laboratory BRAHMS Collaboration.
Results from the BRAHMS Experiment at RHIC F.Rami* for the BRAHMS Collaboration * Institut de Recherches Subatomiques and Université Louis Pasteur, Strasbourg.
Results from First RHIC run QM 2001 January 15, 2001 Results from First RHIC run QM 2001 January 15, 2001 F.Videbœk Physics Department Brookhaven National.
Strangeness production in Au+Au collisions at RHIC Jens Ivar Jørdre University of Bergen, Norway.
Strangeness Measurements in BRAHMS J.H. Lee Physics Department Brookhaven National Laboratory For the BRAHMS Collaboration SQM2003 Mar  Results.
1 Results from the BRAHMS experiment at RHIC Dieter Röhrich Fysisk institutt, Universitetet i Bergen for the BRAHMS collaboration Experimental setup Stopping.
1 Results from the BRAHMS experiment at RHIC Dieter Röhrich Fysisk institutt, Universitetet i Bergen for the BRAHMS collaboration Experimental setup Stopping.
Rapidity Dependence of Pion Elliptic Flow Hironori Ito 1 Erik Johnson 2 Steve Sanders 2 BRAHMS Collaboration 1 Brookhaven National Laboratory 2 University.
Recent Results from BRAHMS from y=0 to y=3 I. G. Bearden Niels Bohr Institute University of Copenhagen, Denmark Quark Matter 2002, July 18-24, Nantes,
HIGHLIGHTS BRAHMS I.G. Bearden, Niels Bohr Institute QM'06 Shanghai 2 Outline BRAHMS Intermediate PT Soft physics.
BRAHMS Scanning the phases of QCD I. Arsene, I.G. Bearden, D. Beavis, C. Besliu, B. Budick, H. Bøggild, C. Chasman, C. H. Christensen, P. Christiansen,
Presentation for NFR - October 19, Trine S.Tveter Recent results from RHIC Systems studied so far at RHIC: - s NN 1/2 = 
Elementary interactions and cold nuclear matter at RHIC Bjørn H. Samset Dr. student., UiO (In melting the nucleus, did we break some stained glass windows?)
Phases of matter in the BRAHMS experiment Paweł Staszel, Marian Smoluchowski Institute of Physics Jagiellonian University for the BRAHMS Collaboration.
Jaipur, India Feb title Recent Results from BRAHMS R. Debbe for the BRAHMS Collaboration Physics Dept. Brookhaven National Laboratory.
April 29, 2001APS-Wash-DC, Jens Jørgen Gaardhøje, Niels Bohr Institute1 nReaction features in 65 AGeV Au + 65AGeV Au nElectromagnetic dissociation ndN(ch)/d.
Yichun Xu (USTC/BNL)April 27-29, Hangzhou, CHINA1 Measurements of identified meson and baryon production at high p T in p+p and Au+Au collisions at STAR.
DNP2004 Oct Hyatt Regency Chicago IL Ramiro Debbe for the BRAHMS collaboration Physics Department Forward Identified Particle Production in d+Au.
Truls Martin Larsen, BRAHMS Collaboration, QM Aug 1 Nuclear Modification factors in Cu-Cu and Au-Au collisions Truls Martin Larsen.
Rapidity dependence of charged particle yields with BRAHMS for Au+Au at 200 GeV Djamel Ouerdane for the BRAHMS collaboration Quark Matter 2002 Nantes,
Kaon Production in Central Au+Au Collisions at 200 and 63 GeV Djamel Ouerdane Niels Bohr Institute for the BRAHMS Collaboration Strange Quark Matter 2004.
BRAHMS Heavy Ion Results and Perspectives Erik Bjorn Johnson RHIC & AGS Users Meeting June 8, 2006.
Eun-Joo Kim ( Chonbuk Nat. Univ.) Hongyan Yang ( Univ. of Bergen ) For the Collaboration N MF Nuclear Modification Factors at BRAHMS.
BRAHMS 18. JUNI 2003 BNL High Pt Colloquium I.G.Bearden, Niels Bohr Institute 1 BRAHMS High P T Measurements with BRAHMS I.G. Bearden, Niels Bohr Institute.
8 th February 2002Michael Murray, Texas A&M, CMS Heavy Ion Mtg at MIT Brahms: Forward Physics at RHIC T1 MTPC1 T2 MTPC2 MRS: 90 deg 6.5 msr FS: 6 deg 0.8.
Kansas OCT 2004 Ramiro Debbe for the BRAHMS collaboration Physics Department BRAHMS Forward Physics Program Forward Physics at RHIC and LHC University.
HAW Sep Maui, Hawaii Ramiro Debbe BNL Physics Department The excess of positive charged particles measured at forward rapidities in d+Au.
BRAHMS Zhongbao Yin Department of Physics, University of Bergen for the BRAHMS Collaboration High p T Spectra of Protons and Charged Pions in Au+Au and.
1 Physics at forward rapidities systems p+p at 200 and 62 GeV d+Au collisions at 200 GeV Au+Au collisions observables pt-spectra nuclear modification factor.
Baryon-to-meson production in a wide range of baryo-chemical potential at RHIC Paweł Staszel, Marian Smoluchowski Institute of Physics Jagiellonian University.
BRAHMS Y RHIC: snn=130 GeV, and snn=200 GeV
Radoslaw Karabowicz for the BRAHMS Collaboration
Eun-Joo Kim University of Kansas For the BRAHMS collaboration
Soft Physics at Forward Rapidity
Recent Results from the BRAHMS
BRAHMS overview Paweł Staszel,
Forward Physics with BRAHMS at RHIC University of Bergen & CERN
Presentation transcript:

Identified hadron production in d+Au and p+p collisions at RHIC Hongyan Yang for the BRAHMS Collaboration University of Bergen, Norway

Outline Experimental overview Preliminary results - particle spectra - particle yields and ratios - nuclear modification factor - net-protons Summary 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Motivations rapidity dependence of particle spectra in p+p and d+Au: a reference for heavy ion collisions particle spectra in p+p collisions: a test of pQCD nuclear modification factor for nuclear effect, initial state effect? rapidity distribution of net-protons: stopping in elementary collisions 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Identified particle spectra in p+p collisions 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Spectra at forward rapidity (pp collisions) – comparison to NLO pQCD Calculations by W. Vogelsang BRAHMS Preliminary Same fragmentation functions as used for the PHENIX comparison at mid-rapidity. mKKP: KKP has only 0 fragmentation. Modifications were needed to calculate charged pions. K: fragmentation function by Kretzer NLO pQCD describes data also at forward rapidities 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Spectra at forward rapidity ( p+p collisions ) pT-dependence of ratios Red: p/+ Blue: p-bar/ - e+e-: p+p-bar/++ - (ALEPH) BRAHMS Preliminary Ratios y=3.0 and 3.3 Excess of positive pions: ratio ->1/2 (valence quark counting) Small p/p ratio eliminates possible strong g -> p or p fragmentation The difference between protons and anti-protons indicates another mechanism besides fragmentation that puts so many protons at high pT. 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

RdAu - for hadrons, suppression was seen at forward rapidity PRL 93, 242303 (2004) RdAu - for hadrons, suppression was seen at forward rapidity - Pions are suppressed, while protons are not 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Extraction of particle yields (p+p) d2N/2ppTdpTdy 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Rapidity distributions 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

like-particle ratios (p+p) 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

K/p, p/p ratios (p+p) Open symbols: positive particles Closed symbols: negative particles All ratios decrease with increasing rapidity , except p/p+ 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Net-proton distribution pT [GeV/c] BRAHMS Preliminary p+p 200GeV dN/dpT Subtraction of p-bar yield from proton yield for each pT bin A Boltzmann function is used to fit the data 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

p+p 200GeV 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Net-proton distribution (d+Au) d+Au 200GeV 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Summary NLO pQCD describes pT spectra at forward rapidities in p+p collisions RdAu: suppression of h- yields at forward rapidities confirmed by identified hadrons spectra Strong suppression of pions No suppression of protons HIJING/B describes the net-protons in p+p better than PYTHIA Net-protons are piled up at mid-rapidity in central d+Au collisions 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

BRAHMS Collaboration I. C. Arsene12, I. G. Bearden7, D. Beavis1, S. Bekele12, C. Besliu10, B. Budick6, H. Bøggild7, C. Chasman1, C. H. Christensen7, P. Christiansen7, H.Dahlsgaard7, R. Debbe1, J. J. Gaardhøje7, K. Hagel8, H. Ito1, A. Jipa10, E.B.Johnson11, J. I. Jørdre9, C. E. Jørgensen7, R. Karabowicz5, N. Katrynska5 ,E. J. Kim11, T. M. Larsen7, J. H. Lee1, Y. K. Lee4,S. Lindahl12, G. Løvhøiden12, Z. Majka5, M. J. Murray11, J. Natowitz8, C.Nygaard7B. S. Nielsen8, D. Ouerdane8, D.Pal12, F. Rami3, C. Ristea8, O. Ristea11, D. Röhrich9, B. H. Samset12, S. J. Sanders11, R. A. Scheetz1, P. Staszel5, T. S. Tveter12, F. Videbæk1, R. Wada8, H. Yang9, Z. Yin9, I. S. Zgura2 1. Brookhaven National Laboratory, Upton, New York, USA 2. Institute of Space Science, Bucharest - Magurele, Romania 3. Institut Pluridisciplinaire Hubert Curien et Université Louis Pasteur, Strasbourg, France 4. Johns Hopkins University, Baltimore, USA 5. M. Smoluchkowski Institute of Physics, Jagiellonian University, Krakow, Poland 6. New York University, New York, USA 7. Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark 8. Texas A&M University, College Station, Texas, USA 9. University of Bergen, Department of Physics and Technology, Bergen, Norway 10. University of Bucharest, Romania 11. University of Kansas, Lawrence, Kansas, USA 12. University of Oslo, Department of Physics, Oslo, Norway 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Backup slides 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)

Particle Identification MRS by TOFW FS by RICH Two plots (just flash...) - one is for MRS (TOFW) - another is for FS (RICH) 2019/1/14 Identified particle production in d+Au and p+p collisions at RHIC (QM2006 Shanghai, China)