7 research outputs found

    Measurements of the azimuthal anisotropy of prompt and nonprompt charmonia in PbPb collisions at sNN \sqrt{s_{\textrm{NN}}} = 5.02 TeV

    No full text
    The second-order (v2_{2}) and third-order (v3_{3}) Fourier coefficients describing the azimuthal anisotropy of prompt and nonprompt (from b-hadron decays) J/ψ, as well as prompt ψ(2S) mesons are measured in lead-lead collisions at a center-of-mass energy per nucleon pair of sNN \sqrt{s_{\textrm{NN}}} = 5.02 TeV. The analysis uses a data set corresponding to an integrated luminosity of 1.61 nb1^{−1} recorded with the CMS detector. The J/ψ and ψ(2S) mesons are reconstructed using their dimuon decay channel. The v2_{2} and v3_{3} coefficients are extracted using the scalar product method and studied as functions of meson transverse momentum and collision centrality. The measured v2_{2} values for prompt J/ψ mesons are found to be larger than those for nonprompt J/ψ mesons. The prompt J/ψ v2_{2} values at high pT_{T} are found to be underpredicted by a model incorporating only parton energy loss effects in a quark-gluon plasma medium. Prompt and nonprompt J/ψ meson v3_{3} and prompt ψ(2S) v2_{2} and v3_{3} values are also reported for the first time, providing new information about heavy quark interactions in the hot and dense medium created in heavy ion collisions.[graphic not available: see fulltext

    Measurements of the azimuthal anisotropy of prompt and nonprompt charmonia in PbPb collisions at sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV

    No full text
    International audienceThe second-order (v2v_2) and third-order (v3v_3) Fourier coefficients describing the azimuthal anisotropy of prompt and nonprompt (from b-hadron decays) J/ψ\psi, as well as prompt ψ\psi(2S) mesons are measured in lead-lead collisions at a center-of-mass energy per nucleon pair of sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV. The analysis uses a data set corresponding to an integrated luminosity of 1.61 nb1^{-1} recorded with the CMS detector. The J/ψ\psi and ψ\psi(2S) mesons are reconstructed using their dimuon decay channel. The v2v_2 and v3v_3 coefficients are extracted using the scalar product method and studied as functions of meson transverse momentum and collision centrality. The measured v2v_2 values for prompt J/ψ\psi mesons are found to be larger than those for nonprompt J/ψ\psi mesons. The prompt J/ψ\psiv2v_2 values at high pTp_\mathrm{T} are found to be underpredicted by a model incorporating only parton energy loss effects in a quark-gluon plasma medium. Prompt and nonprompt J/ψ\psi meson v3v_3 and prompt ψ\psi(2S) v2v_2 and v3v_3 values are also reported for the first time, providing new information about heavy quark interactions in the hot and dense medium created in heavy ion collisions

    Measurements of the azimuthal anisotropy of prompt and nonprompt charmonia in PbPb collisions at sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV

    No full text
    The second-order (v2v_2) and third-order (v3v_3) Fourier coefficients describing the azimuthal anisotropy of prompt and nonprompt (from b-hadron decays) J/ψ\psi, as well as prompt ψ\psi(2S) mesons are measured in lead-lead collisions at a center-of-mass energy per nucleon pair of sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV. The analysis uses a data set corresponding to an integrated luminosity of 1.61 nb1^{-1} recorded with the CMS detector. The J/ψ\psi and ψ\psi(2S) mesons are reconstructed using their dimuon decay channel. The v2v_2 and v3v_3 coefficients are extracted using the scalar product method and studied as functions of meson transverse momentum and collision centrality. The measured v2v_2 values for prompt J/ψ\psi mesons are found to be larger than those for nonprompt J/ψ\psi mesons. The prompt J/ψ\psiv2v_2 values at high pTp_\mathrm{T} are found to be underpredicted by a model incorporating only parton energy loss effects in a quark-gluon plasma medium. Prompt and nonprompt J/ψ\psi meson v3v_3 and prompt ψ\psi(2S) v2v_2 and v3v_3 values are also reported for the first time, providing new information about heavy quark interactions in the hot and dense medium created in heavy ion collisions

    Measurements of the azimuthal anisotropy of prompt and nonprompt charmonia in PbPb collisions at sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV

    No full text
    International audienceThe second-order (v2v_2) and third-order (v3v_3) Fourier coefficients describing the azimuthal anisotropy of prompt and nonprompt (from b-hadron decays) J/ψ\psi, as well as prompt ψ\psi(2S) mesons are measured in lead-lead collisions at a center-of-mass energy per nucleon pair of sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV. The analysis uses a data set corresponding to an integrated luminosity of 1.61 nb1^{-1} recorded with the CMS detector. The J/ψ\psi and ψ\psi(2S) mesons are reconstructed using their dimuon decay channel. The v2v_2 and v3v_3 coefficients are extracted using the scalar product method and studied as functions of meson transverse momentum and collision centrality. The measured v2v_2 values for prompt J/ψ\psi mesons are found to be larger than those for nonprompt J/ψ\psi mesons. The prompt J/ψ\psiv2v_2 values at high pTp_\mathrm{T} are found to be underpredicted by a model incorporating only parton energy loss effects in a quark-gluon plasma medium. Prompt and nonprompt J/ψ\psi meson v3v_3 and prompt ψ\psi(2S) v2v_2 and v3v_3 values are also reported for the first time, providing new information about heavy quark interactions in the hot and dense medium created in heavy ion collisions

    Measurements of the azimuthal anisotropy of prompt and nonprompt charmonia in PbPb collisions at sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV

    No full text
    International audienceThe second-order (v2v_2) and third-order (v3v_3) Fourier coefficients describing the azimuthal anisotropy of prompt and nonprompt (from b-hadron decays) J/ψ\psi, as well as prompt ψ\psi(2S) mesons are measured in lead-lead collisions at a center-of-mass energy per nucleon pair of sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV. The analysis uses a data set corresponding to an integrated luminosity of 1.61 nb1^{-1} recorded with the CMS detector. The J/ψ\psi and ψ\psi(2S) mesons are reconstructed using their dimuon decay channel. The v2v_2 and v3v_3 coefficients are extracted using the scalar product method and studied as functions of meson transverse momentum and collision centrality. The measured v2v_2 values for prompt J/ψ\psi mesons are found to be larger than those for nonprompt J/ψ\psi mesons. The prompt J/ψ\psiv2v_2 values at high pTp_\mathrm{T} are found to be underpredicted by a model incorporating only parton energy loss effects in a quark-gluon plasma medium. Prompt and nonprompt J/ψ\psi meson v3v_3 and prompt ψ\psi(2S) v2v_2 and v3v_3 values are also reported for the first time, providing new information about heavy quark interactions in the hot and dense medium created in heavy ion collisions

    Measurements of the azimuthal anisotropy of prompt and nonprompt charmonia in PbPb collisions at sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV

    No full text
    International audienceThe second-order (v2v_2) and third-order (v3v_3) Fourier coefficients describing the azimuthal anisotropy of prompt and nonprompt (from b-hadron decays) J/ψ\psi, as well as prompt ψ\psi(2S) mesons are measured in lead-lead collisions at a center-of-mass energy per nucleon pair of sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV. The analysis uses a data set corresponding to an integrated luminosity of 1.61 nb1^{-1} recorded with the CMS detector. The J/ψ\psi and ψ\psi(2S) mesons are reconstructed using their dimuon decay channel. The v2v_2 and v3v_3 coefficients are extracted using the scalar product method and studied as functions of meson transverse momentum and collision centrality. The measured v2v_2 values for prompt J/ψ\psi mesons are found to be larger than those for nonprompt J/ψ\psi mesons. The prompt J/ψ\psiv2v_2 values at high pTp_\mathrm{T} are found to be underpredicted by a model incorporating only parton energy loss effects in a quark-gluon plasma medium. Prompt and nonprompt J/ψ\psi meson v3v_3 and prompt ψ\psi(2S) v2v_2 and v3v_3 values are also reported for the first time, providing new information about heavy quark interactions in the hot and dense medium created in heavy ion collisions
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