Light D-wave axial-tensor K2(1820) meson at finite temperature

Title Light D-wave axial-tensor K2(1820) meson at finite temperature
Author Türkan, Arzu, Dağ, Hüseyin, Süngü, J. Y., Veliev, V.
Publication Date: 2019-06
Publication Place - IOP Publishing
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 0295-5075
Record ID 7d4570a3-9179-4902-806e-619326b7859d
Library Location Natural and Mathematical Sciences
Date 2019-06
Notes Kocaeli University ; TÜBİTAK
Sample Text In this work the properties of the axial-tensor K-2(1820) meson in a hot medium are investigated. The mass and the decay constant of this state are calculated via thermal QCD sum rules considering QCD condensates up to dimension five. Our analysis show that both mass and decay constant stay almost monotonous up to certain temperatures and then they diminish with increasing temperature. The mass and decay constant estimated at zero temperature are in good agreement with the present experimental data and theoretical estimations.
DOI 10.1209/0295-5075/126/51001
Cilt 126
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Light D-wave axial-tensor K2(1820) meson at finite temperature

Author Türkan, Arzu, Dağ, Hüseyin, Süngü, J. Y., Veliev, V.
Publication Date 2019-06
Publication Place - IOP Publishing
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 0295-5075
Record ID 7d4570a3-9179-4902-806e-619326b7859d
Library Location Natural and Mathematical Sciences
Date 2019-06
Notes Kocaeli University ; TÜBİTAK
Sample Text In this work the properties of the axial-tensor K-2(1820) meson in a hot medium are investigated. The mass and the decay constant of this state are calculated via thermal QCD sum rules considering QCD condensates up to dimension five. Our analysis show that both mass and decay constant stay almost monotonous up to certain temperatures and then they diminish with increasing temperature. The mass and decay constant estimated at zero temperature are in good agreement with the present experimental data and theoretical estimations.
DOI 10.1209/0295-5075/126/51001
Cilt 126
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