A Comprehensive Study of the Radiative Decay of J/ψ and ψ(2s) to Pseudoscalar Meson Pairs and Search for Glueballs

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A Comprehensive Study of the Radiative Decay of J/ψ and ψ(2s) to Pseudoscalar Meson Pairs and Search for Glueballs Sean Dobbs Northwestern U. Hadron 2015 Jefferson Lab, Newport News, VA Sept. 14, 2015

Introduction QCD predicts the existence of glueballs, gg and ggg bound states. Glue-rich radiative decays of heavy quarkonia, ψ,υ ɣ + gg, are expected to couple strongly to these states (C=+, J even). The lowest mass glueballs, J PC = 0 ++, 2 ++, are naively expected to have decay patterns into two pseudoscalars based on flavor SU(3). However, the physical states we observe are mixtures of normal mesons and glueballs with the same quantum numbers. Region probed by this analysis Glueball spectrum from Chen et al. To disentangle these contributions and understand the contribution of glueballs to the meson spectrum, we need to make comprehensive and systematic measurements of these different final states. We have done so in decays of J/ψ and ψ(2s). 2

Introduction We measure decays J/ψ, ψ(2s) ɣ + [π + π, π 0 π 0, K + K, KSKS, ηη] using e + e annihilation data taken with the CLEO-c detector: 25 M directly produced ψ(2s) 5 M J/ψ produced via ψ(2s) π + π J/ψ Tagging via π + π provides clean J/ψ sample. We fully reconstruct these decays and kinematically fit them. Previous J/ψ measurements by CB, Mark III, DM2, BES: BES II, 58 M J/ψ, decays to ɣ + [ππ, KK] BES III, 228 M J/ψ, decays to ɣ + ηη No previously published ψ(2s) results, results shown here are the first. Unpublished BES II results from 14 M ψ(2s) 3

CLEO-c Detector Photon Detection with Crystal Calorimeter π/k separation using RICH and DC de/dx Precision tracking in 1T B field Acceptance: cos θ < 0.93 Charged particles: σp/p = 0.6% @ 1 GeV/c Photons: σe/e = 2.2% @ 1 GeV σp/p = 5% @ 100 MeV Precision charged and neutral particle reconstruction and identification leads to clean mass spectra with small backgrounds. 4

Dalitz Plots in J/Ѱ Decay Cut on π + π and K + K Dalitz plots to reject ρπ and KK* decays. 5

Dalitz Plots in Ѱ(2S) Decay Strong bands due to χcj decays, ρπ and KK* decays suppressed. 6

ππ Mass Spectra ρ(770) f2(1270) ρ(770) from ISR f2(1270) f0(1710) f0(1500) f0(1710) f2(1270) f0(1710) f2(1270) f0(1710) 7

KK Mass Spectra f2 (1525) f0(1710) Φ(1020) from ISR f2 (1525) f0(1710) f0(1370)? f2 (1525) f0(1710) f2 (1525) f0(1710) 8

ηη Mass Spectra f0(1710)? f0(1710)? Small statistics in ηη, only fit ππ and KK spectra. 9

Fits to Mass Spectra We fit the mass spectra with relativistic, non-interfering Breit-Wigner shapes, and a constant or linear background. ππ: ρ(770), f2(1270), f0(1500), f0(1710), f0(2100) KK: f0(1370), f2 (1525), f0(1710), f0(2200) Resonance widths fixed to PDG values. Mass and normalization float freely. Fit results are consistent between charged and neutral modes, also with simultaneous fits of charged and neutral spectra where isospin conservation is assumed. 10

ππ Mass Spectra Fit Results 11

KK Mass Spectra Fit Results 12

Branching Fraction Results Masses are generally consistent with PDG values. Branching fractions generally consistent with those measured by BES II PWA analyses. 13

Branching Fraction Results Measured the ratio of f 0 (1710) decay to ππ and KK: Br(f0(1710) KK) R = = 3.2 ± 0.4 Br(f0(1710) ππ) Agrees with R(BES) = 2.9 ± 0.9, R(Mk. III) = 3.7 +1.6 2.3 Differs significantly from pure glueball expectation of 1.33. Useful to check different models of f 0 (1710) decay. 14

Upper Limits for f2(2200) Production The narrow f 2 (2200) has a long history of observations and nonobservations. We do not observe this state, and set competitive upper limits on its production from J/ψ, first upper limits from ψ(2s). 15

χcj Mass Spectra Clear signals seen for two pseudoscalar decay of χcj states. Branching fractions consistent with PDG values and previous CLEO publications. 16

χcj Branching Fraction Ratios Ochs [J.Phys.G.Nucl.Part.Phys. 40, 04301 (2013)] has pointed out that the χc0 and χc2 decays are mediated by 2 gluons, and thus provide an opportunity to test the flavor independence of these decays. CLEO-c data are consistent with the theoretical expectations, except η η decays. [see also PRD 75, 071101(R) (2007), PRD 79, 072007 (2009)]. 17

Upper limits on higher mass glueball production No evidence seen for peaks with widths of 10-100 MeV, in mass region below χcj peaks. Upper limits on the productions of such states were determined. 18

Summary We analyzed 25 M ψ(2s) and 5M J/ψ of CLEO-c data for the reaction J/ψ, ψ(2s) ɣ + [π + π, π 0 π 0, K + K, KSKS, ηη] Results published as PRD 91, 052006 (2015). ψ(2s) results are the world s first. Branching fractions for radiative decays to scalar and tensor mesons were measured. The measured ratio R(f0(17100))ππ/KK = 3.2 gives insight into its composition. No evidence for the narrow tensor glueball or higher mass glueballs was seen, upper limits on their production were established. 19

Backup Slides 20

Basic Event Selections Decay Mode # tracks # showers Ѱ(2S) ɣ π + π 2 1 ɣ K + K 2 1 ɣ π 0 π 0 0 5 ɣ ηη 0 5 ɣ KSKS 4 1 J/Ѱ ɣ π + π 4 1 ɣ K + K 4 1 ɣ π 0 π 0 2 5 ɣ ηη 2 5 ɣ KSKS 6 1 21

Background Studies 22