Semi-inclusive photon-hadron production in pp and pA collisions at RHIC and LHC
arXiv:1209.0478 · doi:10.1103/PhysRevD.86.094016
Abstract
We investigate semi-inclusive photon-hadron production in the color glass condensate (CGC) framework at RHIC and the LHC energies in proton-proton (pp) and proton-nucleus (pA) collisions. We calculate the coincidence probability for azimuthal correlation of pairs of photon-hadron and show that the away-side correlations have a double-peak or a single-peak structure depending on trigger particle selection and kinematics. This novel feature is unique for semi-inclusive photon-hadron production compared to a similar measurement for double inclusive dihadron production in pA collisions. We obtain necessary conditions between kinematics variables for the appearance of a double-peak or a single peak structure for the away-side photon-hadron correlations in pp and pA collisions at forward rapidities and show that this feature is mainly controlled by the ratio p_T^hadron/p_T^photon. Decorrelation of away-side photon-hadron production by increasing the energy, rapidity and density, and appearance of double-peak structure can be understood by QCD saturation physics. We also provide predictions for the ratio of single inclusive prompt photon to hadron production, and two-dimensional nuclear modification factor for the semi-inclusive photon-hadron pair production at RHIC and the LHC at forward rapidities.
16 pages, 20 figures; v2: latex Compilation problem in Figs. 3,4 corrected
References in corpus (27)
- Parton distributions for the LHC
- The Color Glass Condensate
- Universality of Unintegrated Gluon Distributions at small x
- NLO evolution of color dipoles
- Quark contribution to the small- evolution of color dipole
- Triumvirate of Running Couplings in Small-x Evolution
- The ridge in proton-proton collisions at the LHC
- Forward inclusive dijet production and azimuthal correlations in pA collisions
- Update of Parton Distributions at NNLO
- Solving The High Energy Evolution Equation Including Running Coupling Corrections
- Azimuthal correlations of forward di-hadrons in d+Au collisions at RHIC in the Color Glass Condensate
- kt-factorization for Hard Processes in Nuclei
- Impact parameter dependent colour glass condensate dipole model
- Single Inclusive Hadron Production at RHIC and the LHC from the Color Glass Condensate
- Angular Correlations in Gluon Production at High Energy
- Particle Production at High Energy and Large Transverse Momentum - "The Hybrid Formalism" Revisited
- Tomography of high-energy nuclear collisions with photon-hadron correlations
- Gluon saturation and inclusive hadron production at LHC
- Running coupling and power corrections in nonlinear evolution at the high--energy limit
- Prompt photon production and photon-hadron correlations at RHIC and the LHC from the Color Glass Condensate
- Gluon saturation and energy dependence of hadron multiplicity in pp and AA collisions at the LHC
- Hadron multiplicity in pp and AA collisions at LHC from the Color Glass Condensate
- Azimuthal anisotropy of direct photons
- Drell-Yan Lepton-Pair-Jet Correlation in pA collisions
- Direct photons at forward rapidities in high-energy pp collisions
- Hadron production at the LHC: Any indication of new phenomena
- Investigating the high energy QCD approaches for prompt photon production at the LHC
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- Mining for Gluon Saturation at Colliders
- Isolated photon-hadron production in high energy and collisions at RHIC and LHC
- Harmonics of Parton Saturation in Lepton-Jet Correlations at the EIC
- Inclusive prompt photon-jet correlations as a probe of gluon saturation in electron-nucleus scattering at small
- Isolated photon production and pion-photon correlations in high-energy and collisions
- Diphoton production in high-energy p+A collisions
- Small- QCD evolution of Wilson line correlator: the weak field limit
- Isolated photon production in collisions at forward rapidities and high multiplicity events
- Nonlinear Klein-Gordon equation and the Bose-Einstein condensation
- Physics with high-luminosity proton-nucleus collisions at the LHC
- Predictions for photon-jet correlations at forward rapidities in heavy-ion collisions
- Scattering off the Color Glass Condensate
- Future heavy-ion facilities: FCC-AA