Multi-particle production in proton–nucleus collisions in the color glass condensate
暂无分享,去创建一个
[1] J. Nagle,et al. Exploring origins for correlations between flow harmonics and transverse momentum in small collision systems , 2021, Physical Review C.
[2] T. R. Kirkpatrick,et al. Nonhydrodynamic initial conditions are not soon forgotten. , 2021, Physical review. E.
[3] G. Chirilli. High-energy operator product expansion at sub-eikonal level , 2021, Journal of High Energy Physics.
[4] N. Armesto,et al. Angular correlations in pA collisions from CGC: multiplicity and mean transverse momentum dependence of $$v_2$$ , 2020, The European Physical Journal C.
[5] M. Dam,et al. Two-particle azimuthal correlations in photonuclear ultraperipheral Pb + Pb collisions at 5 . 02 TeV with ATLAS , 2021 .
[6] T. Altinoluk,et al. Quarks at next-to-eikonal accuracy in the CGC: Forward quark-nucleus scattering , 2020, 2012.03886.
[7] C. Shen,et al. Observable Signatures of Initial State Momentum Anisotropies in Nuclear Collisions. , 2020, Physical review letters.
[8] N. Armesto,et al. Particle correlations from the initial state , 2020, The European Physical Journal A.
[9] E. Tassi,et al. Two-particle azimuthal correlations as a probe of collective behaviour in deep inelastic ep scattering at HERA , 2020, Journal of High Energy Physics.
[10] U. Wiedemann,et al. Early- and Late-Time Behavior of Attractors in Heavy-Ion Collisions. , 2020, Physical review letters.
[11] Zeus Collaboration. Two-particle azimuthal correlations as a probe of collective behaviour in deep inelastic ep scattering at HERA , 2019, Journal of High Energy Physics.
[12] Hoang Dai Nghia Nguyen,et al. Measurement of long-range two-particle azimuthal correlations in Z-boson tagged pp collisions at √s=8 and 13 TeV , 2020 .
[13] Hoang Dai Nghia Nguyen,et al. Measurement of flow harmonics correlations with mean transverse momentum in lead–lead and proton–lead collisions at √sNN=5.02TeV with the ATLAS detector , 2019 .
[14] S. Schlichting,et al. Saturation corrections to dilute-dense particle production and azimuthal correlations in the Color Glass Condensate , 2019, 1910.12496.
[15] N. Armesto,et al. Effect of non-eikonal corrections on azimuthal asymmetries in the color glass condensate , 2019, The European Physical Journal C.
[16] U. Wiedemann,et al. Flow in AA and pA as an interplay of fluid-like and non-fluid like excitations , 2019, The European Physical Journal C.
[17] N. Armesto,et al. Non-eikonal corrections to multi-particle production in the color glass condensate , 2019, The European Physical Journal C.
[18] Yen-Jie Lee,et al. Measurements of Two-Particle Correlations in e^{+}e^{-} Collisions at 91 GeV with ALEPH Archived Data. , 2019, Physical review letters.
[19] C. Zhang,et al. Two-particle azimuthal harmonics in pA collisions , 2018, Nuclear Physics A.
[20] Mauricio Martínez,et al. Multiparticle production at mid-rapidity in the color-glass condensate , 2018, Journal of High Energy Physics.
[21] J. Nagle,et al. Assessing saturation physics explanations of collectivity in small collision systems with the ip-jazma model , 2018, Physical Review C.
[22] G. Chirilli. Sub-eikonal corrections to scattering amplitudes at high energy , 2018, Journal of High Energy Physics.
[23] P. Tribedy,et al. Systematics of azimuthal anisotropy harmonics in proton–nucleus collisions at the LHC from the Color Glass Condensate , 2018, Physics Letters B.
[24] I. Vitev,et al. Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams , 2018, 1812.06772.
[25] D. K. Mishra,et al. Creation of quark–gluon plasma droplets with three distinct geometries , 2018, Nature Physics.
[26] Y. Mulian. Multi particle production in proton-nucleus collisions , 2018, Proceedings of XXVI International Workshop on Deep-Inelastic Scattering and Related Subjects — PoS(DIS2018).
[27] R. Sarpong,et al. Bio-inspired synthesis of xishacorenes A, B, and C, and a new congener from fuscol† †Electronic supplementary information (ESI) available. See DOI: 10.1039/c9sc02572c , 2019, Chemical science.
[28] P. Tribedy,et al. Hierarchy of Azimuthal Anisotropy Harmonics in Collisions of Small Systems from the Color Glass Condensate. , 2018, Physical review letters.
[29] N. Armesto,et al. Double and triple inclusive gluon production at mid rapidity: quantum interference in p-A scattering , 2018, The European physical journal. C, Particles and fields.
[30] N. Armesto,et al. Correlations and the ridge in the Color Glass Condensate beyond the glasma graph approximation , 2018, 1804.02910.
[31] A. Rezaeian,et al. Multi Quark Production in p+A collisions: Quantum Interference Effects , 2018, 1801.04875.
[32] J. Nagle,et al. Small System Collectivity in Relativistic Hadronic and Nuclear Collisions , 2018, Annual Review of Nuclear and Particle Science.
[33] R. Venugopalan,et al. Parton model description of multiparticle azimuthal correlations in $pA$ collisions , 2017, 1706.06260.
[34] R. Venugopalan,et al. Multiparticle Collectivity from Initial State Correlations in High Energy Proton-Nucleus Collisions. , 2017, Physical review letters.
[35] Bin Zhou,et al. of Long-Range Elliptic Azimuthal Anisotropies , 2018 .
[36] P. Romatschke,et al. Relativistic Fluid Dynamics in and out of Equilibrium , 2017, 1712.05815.
[37] Kaven Henry Yau Wong,et al. Measurements of long-range azimuthal anisotropies and associated Fourier coefficients for pp collisions at √s=5.02 and 13 TeV and p+Pb collisions at √sNN=5.02 TeV with the ATLAS detector , 2016, 1609.06213.
[38] A. Rezaeian,et al. Double parton scattering in the CGC: Double quark production and effects of quantum statistics , 2017, 1707.06985.
[39] B. Schenke. Origins of collectivity in small systems , 2017, 1704.03914.
[40] C. Zhang,et al. Multipole scattering amplitudes in the Color Glass Condensate formalism , 2017, 1704.00266.
[41] S. M. Etesami,et al. Evidence for collectivity in pp collisions at the LHC , 2016, Physics Letters B.
[42] P. Tribedy,et al. Collectivity in Small Collision Systems: An Initial-State Perspective , 2016, 1611.00329.
[43] P. Romatschke. Do nuclear collisions create a locally equilibrated quark–gluon plasma? , 2016, 1609.02820.
[44] I. Balitsky,et al. Gluon TMD in particle production from low to moderate x , 2016, QCD Evolution 2016, Nikhef, Amsterdam, the Netherlands, May 30, 2016.
[45] C. Loizides. Experimental overview on small collision systems at the LHC , 2016, 1602.09138.
[46] P. Bożek. Transverse-momentum-flow correlations in relativistic heavy-ion collisions , 2016, 1601.04513.
[47] V. M. Ghete,et al. Measurement of Long-Range Near-Side Two-Particle Angular Correlations in pp Collisions at sqrt[s]=13 TeV. , 2015, Physical review letters.
[48] N. Armesto,et al. Hanbury-Brown-Twiss measurements at large rapidity separations, or can we measure the proton radius in p-A collisions? , 2015, 1509.03223.
[49] P. Romatschke,et al. Weak and strong coupling equilibration in nonabelian gauge theories , 2015, Journal of High Energy Physics.
[50] I. A. Monroy,et al. Measurements of long-range near-side angular correlations in sNN=5 TeV proton-lead collisions in the forward region , 2015, 1512.00439.
[51] R. Venugopalan,et al. Tracing the origin of azimuthal gluon correlations in the color glass condensate , 2015, Journal of High Energy Physics.
[52] I. Balitsky,et al. Rapidity evolution of gluon TMD from low to moderate x , 2015, DIS 2015, Dallas, TX, April 27, 2015.
[53] N. Armesto,et al. Next-to-next-to-eikonal corrections in the CGC , 2015, 1505.01400.
[54] N. Armesto,et al. Bose enhancement and the ridge , 2015, 1503.07126.
[55] G. S. Averichev,et al. Long-range pseudorapidity dihadron correlations in d + Au collisions at √SNN = 200 GeV , 2015, 1502.07652.
[56] Sener Özönder,et al. Triple-gluon and quadruple-gluon azimuthal correlations from glasma and higher-dimensional ridges , 2015 .
[57] T. Lappi. Azimuthal harmonics of color fields in a high energy nucleus , 2015, 1501.05505.
[58] L. Mclerran,et al. Azimuthal asymmetries and the emergence of “collectivity” from multi-particle correlations in high-energy pA collisions , 2014, 1410.4844.
[59] F. Fleuret,et al. Measurement of Long-Range Angular Correlation and Quadrupole Anisotropy of Pions and ( Anti ) Protons in Central d + Au Collisions at sqrt , 2015 .
[60] Shuang Li,et al. Multiparticle azimuthal correlations in p -Pb and Pb-Pb collisions at the CERN Large Hadron Collider , 2014 .
[61] C. Salgado,et al. Medium-induced gluon radiation and colour decoherence beyond the soft approximation , 2014, 1407.0599.
[62] C. Salgado,et al. Next-to-eikonal corrections in the CGC: gluon production and spin asymmetries in pA collisions , 2014, 1404.2219.
[63] Y. Kovchegov,et al. Two-gluon correlations in heavy–light ion collisions , 2013, 1310.6701.
[64] Andrea Benaglia,et al. Multiplicity and transverse momentum dependence of two- and four-particle correlations in pPb and PbPb collisions , 2013 .
[65] Raju Venugopalan,et al. Comparison of the color glass condensate to dihadron correlations in proton-proton and proton-nucleus collisions , 2013, 1302.7018.
[66] Y. Kovchegov,et al. Long-Range Rapidity Correlations in Heavy-Light Ion Collisions , 2012, 1212.1195.
[67] A. Staśto,et al. Universality of multiparticle production in QCD at high energies , 2012, 1210.1141.
[68] A. Yurkewicz,et al. Observation of Associated Near-Side and Away-Side Long-Range Correlations in ¼ 5 : 02 TeV Proton-Lead Collisions with the ATLAS Detector , 2013 .
[69] C. Collaboration,et al. Observation of long-range near-side angular correlations in proton-lead collisions at the LHC , 2012 .
[70] Y. Kovchegov,et al. Quantum Chromodynamics at High Energy , 2012 .
[71] P. Tribedy,et al. Fluctuating glasma initial conditions and flow in heavy ion collisions. , 2012, Physical review letters.
[72] A. Dumitru,et al. Initial conditions for dipole evolution beyond the McLerran-Venugopalan model , 2011, 1112.4760.
[73] W. Marsden. I and J , 2012 .
[74] A. Kovner,et al. Angular correlations and high energy evolution , 2011, 1109.0347.
[75] E. Iancu,et al. Higher-point correlations from the JIMWLK evolution , 2011, 1109.0302.
[76] T. Altinoluk,et al. Particle Production at High Energy and Large Transverse Momentum - 'The Hybrid Formalism' Revisited , 2011, 1102.5327.
[77] B. Xiao,et al. National Laboratory Lawrence Berkeley National Laboratory Title Universality of Unintegrated Gluon Distributions at small x Permalink , 2011 .
[78] A. Kovner,et al. Angular correlations in gluon production at high energy , 2010, 1012.3398.
[79] Francois Gelis,et al. The ridge in proton-proton collisions at the LHC , 2010, 1009.5295.
[80] D. Volyanskyy,et al. Observation of long-range, near-side angular correlations in proton-proton collisions at the LHC , 2010, 1009.4122.
[81] F. Gelis,et al. Long range two-particle rapidity correlations in A+A collisions from high energy QCD evolution , 2009, 0911.2720.
[82] F. Gelis,et al. Glittering Glasmas , 2009, 0905.3234.
[83] Raju Venugopalan,et al. Three-particle correlation from Glasma flux tubes , 2009, 0902.4435.
[84] C. Marquet,et al. On multiple scatterings of mesons in hot and cold QCD matter , 2008, 0812.3878.
[85] Larry McLerran,et al. Glasma flux tubes and the near side ridge phenomenon at RHIC , 2008, 0804.3858.
[86] K. Tuchin. High Energy pA Collisions in the Color Glass Condensate Approach , 2006, hep-ph/0609258.
[87] Y. Mehtar-Tani. Relating the description of gluon production in pA collisions and parton energy loss in AA collisions , 2006, hep-ph/0606236.
[88] F. Gelis,et al. Gluon propagation inside a high-energy nucleus , 2005, hep-ph/0512079.
[89] J. Jalilian-Marian,et al. The color glass condensate and hadron production in the forward region , 2005, hep-ph/0506308.
[90] F. Gelis,et al. High energy pA collisions in the color glass condensate approach II: quark pair production , 2004, hep-ph/0402257.
[91] E. Iancu,et al. The Color Glass Condensate , 2010, 1002.0333.
[92] H. Fujii. Penetration of a high energy bound state through SU(N) color background , 2002, nucl-th/0205066.
[93] F. Gelis,et al. Probing colored glass via $q\bar{q}$ photoproduction , 2001, hep-ph/0107142.
[94] N. Borghini,et al. Flow analysis from multiparticle azimuthal correlations , 2001, nucl-th/0105040.
[95] K. Golec-Biernat,et al. Saturation in diffractive deep inelastic scattering , 1999, hep-ph/9903358.
[96] K. Golec-Biernat,et al. Saturation effects in deep inelastic scattering at low Q**2 and its implications on diffraction , 1998, hep-ph/9807513.
[97] R. Venugopalan,et al. Gluon distribution functions for very large nuclei at small transverse momentum. , 1993, Physical review. D, Particles and fields.
[98] R. Venugopalan,et al. Computing quark and gluon distribution functions for very large nuclei. , 1993, Physical review. D, Particles and fields.
[99] M. Wilkins. Introduction to hydrodynamics , 1979 .
[100] R. Stephenson. A and V , 1962, The British journal of ophthalmology.