Jim Marie Advisor: Richard Jones University of Connecticut

Slides:



Advertisements
Similar presentations
Phi-Psi, Feb.-Mar., 2006, S.Uehara1 Experimental studies of charmonia in two-photon collisions at Belle S.Uehara (KEK) for the Belle Collaboration e +
Advertisements

Resent BES Results on Scalar Mesons Zhipeng Zheng (Representing BES Collaboration) Institute of High Energy Physics, CAS GHP-2004, Oct. 25.
Charmonium Spectroscopy: Missing or Unconfirmed States Diego Bettoni INFN – Sezione di Ferrara International Workshop on Physics with Antiprotons at GSI.
Kevin Black Meenakshi Narain Boston University
Study of e + e  collisions with a hard initial state photon at BaBar Michel Davier (LAL-Orsay) for the BaBar collaboration TM.
Proton polarization measurements in π° photo-production --On behalf of the Jefferson Lab Hall C GEp-III and GEp-2γ collaboration Wei Luo Lanzhou University.
Resonances in decay for 400fb -1 DC Meeting April 10th, 2006 J.Brodzicka, H.Palka INP Kraków J.Brodzicka, H.Palka INP Kraków B +  D 0 D 0 K + B +  D.
Atmospheric Neutrino Oscillations in Soudan 2
Ralf W. Gothe Nucleon Transition Form Factors Beijing Transition Form Factors at JLab: The Evolution of Baryonic Degrees of Freedom Ralf W. Gothe.
T.C. Jude D.I. Glazier, D.P. Watts The University of Edinburgh Strangeness Photoproduction At Threshold Energies.
Nov2,2001High P T Workshop, BNL Julia Velkovska High pt Hadrons from  sNN = 130 GeV Au-Au collisions measured in PHENIX Julia Velkovska (BNL) for PHENIX.
1 Introduction to Dijet Resonance Search Exercise John Paul Chou, Eva Halkiadakis, Robert Harris, Kalanand Mishra and Jason St. John CMS Data Analysis.
Irakli Chakaberia Final Examination April 28, 2014.
V.L. Kashevarov. Crystal Collaboration Meeting, Mainz, September 2008 Photoproduction of    on protons ► Introduction ► Data analysis.
Zijin Guo Univ. of Hawaii Representing BES Collaboration J/    pp and  BES Beijing, China.
N* Production in α-p and p-p Scattering (Study of the Breathing Mode of the Nucleon) Investigation of the Scalar Structure of baryons (related to strong.
New Observations on Light Hadron Spectroscopy at BESIII Yanping HUANG For BESIII Collaboration Institute of High Energy Physics (IHEP) ICHEP2010, Paris,
Singa and kappa analyses at BESII Ning Wu Institute of High Energy Physics, CAS Beijing, China January 25-26, 2007.
g/ JLab Users Group Meeting Curtis A. Meyer Poster.
MC Check of Analysis Framework and Decay Asymmetry of  W.C. Chang 11/12/2005 LEPS Collaboration Meeting in Taiwan.
Kaon Production on the Nucleon D. G. Ireland MENU Rome, September 30 – October 4, 2013.
Inclusive Diffraction at HERA Marcella Capua – INFN and Calabria University Small X and Diffraction FNAL Chicago (USA) 17 – 20 September 2003 on behalf.
The inсlusive produсtion of the meson resonanсes ρ 0 (770), K * (892), f 0 (980), f 2 (1270) in neutrino- nuсleon сharged сurrent (CC) interaсtions Polyarush.
Meson Photoproduction with Polarized Targets   production a)  0 at threshold b) Roper and P 11 (1710)   production a) S 11 -D 13 phase rotation.
Scalar and pseudoscalar mesons at BESII Xiaoyan SHEN (Representing BES Collaboration) Institute of High Energy Physics, CAS, China Charm06, June 5-7, 2006,
Partial Wave Analysis What is it Relation to physical properties Properties of the S-matrix Limitation and perspectives Examples : peripheral production.
Overview - Alex Dzierba Hall D Calorimeter Review 1 Hall D/GlueX Calorimeter Review Overview and Physics Motivation Alex R. Dzierba Indiana U and Jefferson.
Exclusive ΦΦ in E690 G. Gutierrez FNAL-E690 Collaboration Small-X and Diffraction Physics Conference FERMILAB, Sep 2003.
Search for the  + in photoproduction experiments at CLAS APS spring meeting (Dallas) April 22, 2006 Ken Hicks (Ohio University) for the CLAS Collaboration.
NSTAR2011, Jefferson Lab, USA May 17-20, 2011 Mitglied der Helmholtz-Gemeinschaft Tamer Tolba for the WASA-at-COSY collaboration Institut für Kernphysik.
Jets and α S in DIS Maxime GOUZEVITCH Laboratoire Leprince-Ringuet Ecole Polytechnique – CNRS/IN2P3, France On behalf of the collaboration On behalf of.
Study of e+e- annihilation at low energies Vladimir Druzhinin Budker Institute of Nuclear Physics (Novosibirsk, Russia) SND - BaBar Lepton-Photon, August,
Observation of a near-threshold enhancement in  mass spectrum from J/    彭 海 平 中国科学技术大学 广西桂林( 29/10/2006 )
January 13, 2004A. Cherlin1 Preliminary results from the 2000 run of CERES on low-mass e + e - pair production in Pb-Au collisions at 158 A GeV A. Cherlin.
Simultaneous photo-production measurement of the  and  mesons on the nucleons at the range 680 – 1500 MeV N.Rudnev, V.Nedorezov, A.Turinge for the GRAAL.
The preliminary result from (K° s   ) spectra in reaction p+A at 10 GeV/c Contents Preview Method ( ,  + ) spectrum (K 0 s,   ) spectra Conclusion.
E. Robutti Enrico Robutti I.N.F.N. Genova HEP 2003 Europhysics Conference July 17-23, Aachen, Germany Recent BABAR results in Charmonium and Charm Spectroscopy.
1 Recent Results on J/  Decays Shuangshi FANG Representing BES Collaboration Institute of High Energy Physics, CAS International Conference on QCD and.
Charm Mixing and D Dalitz analysis at BESIII SUN Shengsen Institute of High Energy Physics, Beijing (for BESIII Collaboration) 37 th International Conference.
Eric COGNERAS LPC Clermont-Ferrand Prospects for Top pair resonance searches in ATLAS Workshop on Top Physics october 2007, Grenoble.
1 Proton Structure Functions and HERA QCD Fit HERA+Experiments F 2 Charged Current+xF 3 HERA QCD Fit for the H1 and ZEUS Collaborations Andrew Mehta (Liverpool.
IC40 Flares analysis update Mike Baker PS call, Jan
The study of pentaquark states in the unitary chiral approach
into three pions Opportunities in p pbar annihilation S. Ong IPN Orsay
Covariant Formulation of the Deuteron
Double Ks0 Photoproduction off the proton at CLAS
PWA with huge statistics at BESIII
Test of PWA Reliability at BES
Changyi Zhou (McGill University )
Recent results on light hadron spectroscopy at BES
L*(1520) Photoproduction off Proton and Neutron from CLAS eg3 data set
Study of New Hadron Spectroscopy at BESIII
Measurements of some J/ and c decays at BES
Larisa Nogach Institute of High Energy Physics, Protvino
charm baryon spectroscopy and decays at Belle
University of Minnesota on behalf of the CLEO Collaboration
EMCal Run4 Recalibration Check Looking at K mass centroid and width
Excited State Spectroscopy from Lattice QCD
Study of excited baryons at BESII
Study of e+e- pp process using initial state radiation with BaBar
New Results on 0 Production at HERMES
Study of e+e collisions with a hard initial state photon at BaBar
Comprehensive study of S = -1 hyperon resonances via the coupled-channels analysis of K- p and K- d reactions Hiroyuki Kamano (KEK) YITP Workshop on.
Experiment (Jlab Exp : CLAS eg3)
B. El-Bennich, A. Furman, R. Kamiński, L. Leśniak, B. Loiseau
Partial Wave Analysis results from JETSET the Jetset experiment
p0 ALL analysis in PHENIX
Recent BESII Hot Topics
Proposal for an Experiment: Photoproduction of Neutral Kaons on Deuterium Spokespersons: D. M. Manley (Kent State University) W. J. Briscoe (The George.
Presentation transcript:

Jim Marie Advisor: Richard Jones University of Connecticut A Partial Wave Analysis of Proton-Antiproton Annihilation Above Threshold For Two Phi Meson Production in the JETSET Experiment Jim Marie Advisor: Richard Jones University of Connecticut

JETSET Experiment The channel was investigated with high statistics using a hydrogen-cluster jet target. The incident momentum ranged from 1.1 to 2.0 GeV/c. This is just above threshold ( GeV/c).

Physics Motivation Investigate gluonic resonances . The reaction is OZI suppressed: glueball? These resonances may form in the s channel.

Yang-Mills Glueball Spectrum from Lattice QCD C. Morningstar and M. Peardon, Phys. Rev. D 60, 034509 (1999)

Partial Wave Analysis Original spin parity analysis yielded a 3 wave solution consisting of only 2++ waves. Changes in the relative phases and a peak in the total cross section pointed toward a Breit-Wigner resonance. A subsequent analysis with 6 waves resulted in a better fit with 2++ waves still dominant, however 4++ waves gained significance. The question remained of the sensitivity of these results to the way the background was treated.

Role of the Background Could interference between the resonant channel and background be present? The 2K mass distribution showed an enhancement near threshold underneath the f. This enhancement may be due to the presence of the scaler channel which has a tail above threshold for 4K .

PWA for ff + f0f0 A new PWA has been carried out including coherent interference between the ff channel and the scaler background. The quantum amplitude used in the PWA becomes

phi Partial Waves For , all waves up to J=4 and L=4 in the final state are included: Wave Label Linitial Sinitial Jpc Lfinal Sfinal 1 0 0 1 1 2 0 0 1 1 3 0 0 1 1 4 1 1 1 1 . . . . . . . 23 5 1 4 2

f0 Partial Waves For the background channel , waves up to J=4 and L=4 in the final state are included: Wave Label Linitial Sinitial Jpc Lfinal Sfinal 24 1 1 0 0 25 2 0 1 1 26 3 1 2 0 27 3 1 4 0 28 5 1 4 0

PWA Method Data is divided into 12 sets according to momenta. A log-likelihood is calculated and maximized with respect to the real and imaginary components of the wave amplitudes for each momentum bin.

Essential Ambiguities Partial waves divide into even and odd parity sets each having a global phase (continuous invariance). Four discrete sign transformations leave the differential cross section invariant:

Statistical Ambiguities Topology of the parameter space gives rise to different local maxima in the likelihood. These discrete ambiguities are revealed by a systematic numerical search. The acceptance and statistics in this data set are sufficient to eliminate all distinct solutions which correspond to secondary minima.

Starting Point Perform fits with all waves free plus phase space (background). This provides a baseline for measuring the “goodness of the fit”. Amplitude errors are large and undefined. Search for a minimal wave set that provides an adequate description of all the data. The same set of waves are required at each momentum point. All possible 3 wave combinations (3276 combinations) for were fitted.

Results All three wave combinations plus background were fitted over all momentum points and the best combination that describes the data is Waves: 5,19,20 A 4++ component gains some significance however, the 2++ component is still dominant as seen in the partial wave cross sections.

Partial Wave Cross Sections For Waves 5, 19, 20 GeV/c GeV/c GeV/c GeV/c 2+ wave is dominant

Relative Phases Reference wave 5 radians radians GeV/c GeV/c

Total Cross Section GeV/c GeV/c

Goodness of Fit For a large number of events, the likelihood ratio test behaves as a chi-squared with n0-n degrees of freedom. Lo is the likelihood with the full parameter set unconstrained where L is the likelihood obtained for an unconstrained subset of parameters.

Goodness of Fit Comparison 3-wave fit compared to: 28-wave reference: all 23 ff waves all 5 f0f0 waves phase space 23-wave reference: all 23 ff waves phase space

Assessment of Fit Relative to Presence of the f0 in the Background Quality of fit at lower momenta improves and suggests that only three waves is a sufficient description of the data at these points. However at higher momenta, the quality of fit becomes poorer.

Adding a Single f0 Wave Will the fit improve with the addition of a single f0 wave? Is coherent interference with the background present? Find the best fit from combinations where each of the 5 f0 waves are individually included with waves 5, 19, 20 over all momentum points. Check if the fit improves using the likelihood ratio test.

Three phi Waves Plus One f0 Wave The f0 wave 26 along with waves 5,19, 20 emerges as the best fit combination over all momenta.

Partial Wave Cross Sections for Waves 5, 19, 20 4-wave fit: 5,19, 20, 26 plus background GeV/c GeV/c GeV/c 2+ component remains dominant

Background and Partial Wave Cross Section for Wave 26 GeV/c GeV/c

Total Resonant Cross Section Waves 5, 19, 20 GeV

Relative Phases Reference wave 5 radians radians radians GeV/c GeV/c

Quality of Fit

Goodness of Fit Comparison

Summary Overall fit quality improves when coherent interference with the scaler background is included. A spin component of J=2 is dominant, however a J=4 component is significant. A clear narrow structure is not observed in the resonant cross section for these waves. Some phase motion is observed in the 4+ waves.