Azimuthal dependence in unpolarized proton-induced Drell-Yan processes

Slides:



Advertisements
Similar presentations
Mauro Anselmino, Como, September 7, 2005 Transversity Transversity (transverse spin and transverse motion) Towards transversity distributions: theory.
Advertisements

1 Perspectives on SSA with a transversely polarized 3 He target in JLab Hall-A JLab Hall-A proposal E –Goals of the proposed measurements –Experimental.
1 Transversity Physics Update Jen-Chieh Peng Polarized 3 He and Tansversity Collaboration Meeting, JLab, October 21-22, 2005 University of Illinois at.
Transversity and Transverse-Momentum-Dependent Partonic Functions Alessandro Bacchetta.
1 Partonic Substructure of Nucleons and Nuclei with Dimuon Production Partonic structures of the nucleons and nuclei with dimuon production –Overview and.
1 Updates on Transversity Experiments and Interpretations Jen-Chieh Peng Transversity Collaboration Meeting, JLab, March 4, 2005 University of Illinois.
1 Transverse Spin Measurements at PHENIX John Koster for the PHENIX collaboration University of Illinois at Urbana-Champaign DIS /04/27.
1 Flavor Symmetry of Parton Distributions and Fragmentation Functions Jen-Chieh Peng Workshop on “Future Prospects in QCD at High Energy” BNL, July 17-22,
Spin Azimuthal Asymmetries in Semi-Inclusive DIS at JLAB  Nucleon spin & transverse momentum of partons  Transverse-momentum dependent distributions.
1 Probing the Nucleon Structure with Azimuthal Asymmetries --cos2φ distribution & Boer-Mulders F. Lingyan Zhu University of Illinois at Urbana-Champaign.
Single-spin asymmetries in two hadron production of polarized deep inelastic scattering at HERMES Tomohiro Kobayashi Tokyo Institute of Technology for.
1 Transversity and inclusive 2-pion production Marco Radici Pavia TJNAF, May 2005 In collaboration with: A. Bacchetta (Univ. Regensburg)
Jim Stewart DESY Measurement of Quark Polarizations in Transversely and Longitudinally Polarized Nucleons at HERMES for the Hermes collaboration Introduction.
Single-Spin Asymmetries at CLAS  Transverse momentum of quarks and spin-azimuthal asymmetries  Target single-spin asymmetries  Beam single-spin asymmetries.
1 Possible Additional Measurements in E906 Azimuthal angular distributions of Drell-Yan and J/ Ψ p+d/p+p ratios for J/ Ψ production Nuclear effects of.
1 Probing Spin and Flavor Structures of the Nucleon with Hadron Beams Flavor and spin structures of the nucleons –Overview and recent results Future prospects.
Measurements with Polarized Hadrons T.-A. Shibata Tokyo Institute of Technology Aug 15, 2003 Lepton-Photon 2003.
Physics to be explored by the un-polarized Drell-Yan program in COMPASS experiment Wen-Chen Chang Institute of Physics, Academia Sinica, Taiwan on behalf.
JPARC DY Workshop, April 7 Ralf Seidl (RBRC) R.Seidl: Transverse Spin 1RIKEN, April 7 In JPARC Drell Yan accessible with: UU(unpolarized beam, unpolarized.
1 Azimuthal dependence in unpolarized proton-induced Drell-Yan processes Mini-symposium on orbital motion of quarks in hard scattering 2 nd joint meeting.
Feb 13,2007Brookhaven National Lab1 Cos2φ Asymmetry in p+d/p+p Drell-Yan Lingyan Zhu University of Illinois at Urbana-Champaign FNAL E866/Nusea Collaboration.
1 Quarkonium Production at J-PARC Quarkonium Production at J-PARC with Unpolarized Proton Beam Quarkonium Production at J-PARC with Polarized Beam and.
High-energy hadron physics at J-PARC Wen-Chen Chang 章文箴 Institute of Physics, Academia Sinica, Taiwan KEK theory center workshop on Hadron physics with.
1 Beijing, July 2, 2008 Aram Kotzinian SIDIS asymmetries in Quark-Diquark model for Distribution Functions Aram Kotzinian CEA-Saclay, IRFU/Service de Physique.
1 Transversity Experiments Experimental probes for transversity Current experimental status on transversity and other related distribution and fragmentation.
A sideways look into the proton Transverse momentum and transverse spin in QCD Alessandro Bacchetta.
Transversity (transverse spin and transverse motion)
Spin physics with COMPASS
Flavor decomposition at LO
! how important for transverse spin studies
Qin-Tao Song High Energy Accelerator Research Organization (KEK)
TMD experiments from COMPASS SIDIS
Hadron-structure studies at a neutrino factory
Measurements of quark transversity and orbital motion in hard scattering Yoshiyuki Miyachi Tokyo Institute of Technology.
Luciano Pappalardo for the collaboration
Structure and Dynamics of the Nucleon Spin on the Light-Cone
3/19/20181 Nucleon Spin: Final Solution at the EIC Feng Yuan Lawrence Berkeley National Laboratory.
Experimental Study of Transversity
Nuclear Effects in the Proton-Deuteron Drell-Yan Reaction.
Prague 2007 Collins and Sivers asymmetries
Physics with polarized antiprotons at GSI-PAX
Transverse parton distribution functions
Strangeness and Spin in Fundamental Physics
M. Contalbrigo (on behalf of HERMES collaboration)
kT Asymmetry in Longitudinally Polarized Collisions
Christine A. Aidala University of Michigan
Semi-inclusive DIS at 12 GeV
Can We Learn Quark Orbital Motion from SSAs?
Larisa Nogach Institute of High Energy Physics, Protvino
Unique Description for SSAs in DIS and Hadronic Collisions
Large-X PDFs in the Drell-Yan Process
PHENIX Transverse-Spin Physics
The transverse spin structure of the nucleon
Quark and Gluon Sivers Functions
Searching for intrinsic motion effects in SIDIS
Unique Description for Single Transverse Spin Asymmetries
Single Spin Asymmetry with a Transversely Polarized
kT Asymmetry in Longitudinally Polarized pp Collisions
New Results on 0 Production at HERMES
Transversity in D_Y 4/5/2019 Transversity, Transversity-odd Distributions and Asymmetries in Drell-Yan Processes Gary R. Goldstein Tufts University Leonard.
Spin effects and partonic intrinsic k┴
Transversity in D_Y 4/17/2019 Transversity Distributions and T-odd Asymmetries in Drell-Yan Processes Gary R. Goldstein Tufts University Leonard P. Gamberg.
SSA in the target fragmentation region of SIDIS
Spin Studies via Drell-Yan Process at PANDA
Single spin asymmetries in semi-inclusive DIS
Probing Fragmentation Func. With SIDIS
6th European Research Conference September 21-24, Milos, Greece
New results on SIDIS SSA from JLab
Angular Distribution in Unpolarized Proton-induced Drell-Yan Process
Spin Structure of the Nucleon
Presentation transcript:

Azimuthal dependence in unpolarized proton-induced Drell-Yan processes Lingyan Zhu, Jen-Chieh Peng University of Illinois at Urbana-Champaign Paul Reimer Argonne National Laboratory (FNAL E866/NuSea Collaboration) Mini-symposium on orbital motion of quarks in hard scattering 2nd joint meeting of the APS DNP and JPS Maui, Hawaii, Sep 18-22, 2005

Angular distribution for the Drell-Yan processes In the simple parton model: ( for massless quarks and  measured relative to the annihilation axis) =1 and ==0 Correction due to QCD is small.

Azimuthal cos2 distribution in the W Drell-Yan Conway et al., PRD39,92(1989) E615 at Fermilab: 252 GeV π- + W NA10 at CERN: 140/194/286 GeV π- + W Z. Phys. C37, 545 (1988)

Possible explanations for the cos2 asymmetry The high twist in terms of pion bound state effect is not enough. Brandenburg, Brodsky, Khoze & Muller, PRL73,939(1994) The nuclear distortion of hadronic projectile wavefunction, typically a spin-orbit effect occuring on the nuclear surface. =0 for pp Drell-Yan. Bianconi & Radici, JPG31,645(2005). The spin correlation due to nontrival QCD vacuum.—Flavor blind. Brandenburg, Nachtmann & Mirkes, Z. Phy. C60,697(1993) Boer,Brandenburg,Nachtmann&Utermann, EPC40,55(2005). The non-zero chiral-odd distribution function h1? . It is equal to Sivers function f1T? in the quark-diquark spectator model. Boer, PRD60,014012(1999); …

QCD vacuum effects Brandenburg, Nachtmann & Mirkes, Z. Phy. C60,697(1993) The factorization-breaking spin correlation due to nontrivial QCD vacuum may fit the NA10 data at 194 GeV The helicity flip in the instanton-induced contribution may lead to nontrivial vacuum. Boer,Brandenburg,Nachtmann&Utermann, EPC40,55(2005). This vacuum effect should be flavor blind. 0=0.17 mT=1.5

Boer-Mulders function h1? Boer, PRD60,014012(1999) An spin-correlation approach in terms of h1? can fit the NA10 data at 194 GeV. On the base of quite general arguments, for |qT|<<Q(=m ), Salvo,hep-ph/0407208. 1=0.5 mC=2.3 T=CH=1

Models with Boer-Mulders function h1? The quark-spectator-antiquark model with effective pion-quark-antiquark coupling as a dipole form factor Lu & Ma, hep-ph/0504184 Twist 2 (as well as the kinematic twist 4) contribution in a parton-spectator framework Gamberg&Goldstein, hep-ph/0506127.

Fermi Lab E866/NuSea experiment Drell-Yan events Analyzed (4.5<M<9, M>11) including pp+ - X; pd+ - X High Mass Setting: dset7-39k, dset8-85k (+ polarity) dset11-25k (- polarity) Low Mass Setting: dset5-68k (+ polarity)

Muon momenta Blue: simulation Red: data (dset8) + ! - !

Comparison of data and simulation Blue: simulation Red: data (dset8)

Extraction of azimuthal cos2 distribution Fit Func: p1[1+p3/2 cos2+ p2cos( + p4)] Data M.C. Data/M.C.

Azimuthal cos2 distribution for Drell-Yan processes Very Preliminary

Summary Large cos2 azimuthal asymmetry has been observed in unpolarized -induced Drell-Yan. The are a few possible explanations including the non-trivial vacuum effect and the non-zero Boer-Mulders function h1? . The latter is related to the Sivers function f1T?. The unpolarized p-induced Drell-Yan data seem to suggest small cos2 azimuthal asymmetry. This may disfavor the flavor blind explanation such as vacuum effect.