Melting of 𝜌2 meson at extreme temperatures

Title Melting of 𝜌2 meson at extreme temperatures
Author Sertbakan, E., Süngü, J. Y., Türkan, Arzu, Veliev, V.
Publication Date: 2019
Publication Place - American Institute of Physics Inc.
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-073541925-4
Record ID 4256f54f-6947-4cbb-a30c-bcc12f280763
Library Location Natural and Mathematical Sciences
Date 2019
Sample Text The thermal properties of the light tensor ρ2 meson with quantum numbers JPC = 2- are studied at finite temperature. In our calculations, two-point Thermal QCD sum rules approach is employed including contributions up to operator dimension-5 of quark, gluon, and quark-gluon mix condensates. We present thermal effects on the main hadronic properties namely, mass and decay constant of the considered resonance in SU(3) nonet, which provides more knowledge about axial-tensor family for experiments. The non-perturbative treatments of the light quark dynamics results in mass spectra at zero temperature agree with available experimental data and thermal behavior of meson parameters can be tested in future experiments.
DOI 10.1063/1.5135446
Cilt 2178
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Melting of 𝜌2 meson at extreme temperatures

Author Sertbakan, E., Süngü, J. Y., Türkan, Arzu, Veliev, V.
Publication Date 2019
Publication Place - American Institute of Physics Inc.
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-073541925-4
Record ID 4256f54f-6947-4cbb-a30c-bcc12f280763
Library Location Natural and Mathematical Sciences
Date 2019
Sample Text The thermal properties of the light tensor ρ2 meson with quantum numbers JPC = 2- are studied at finite temperature. In our calculations, two-point Thermal QCD sum rules approach is employed including contributions up to operator dimension-5 of quark, gluon, and quark-gluon mix condensates. We present thermal effects on the main hadronic properties namely, mass and decay constant of the considered resonance in SU(3) nonet, which provides more knowledge about axial-tensor family for experiments. The non-perturbative treatments of the light quark dynamics results in mass spectra at zero temperature agree with available experimental data and thermal behavior of meson parameters can be tested in future experiments.
DOI 10.1063/1.5135446
Cilt 2178
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