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Exact solution of the(1+2)-dimensional generalized Kemmer oscillator in the cosmic string background with the magnetic field

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【作者】 杨毅蔡绍洪隆正文陈浩龙超云

【Author】 Yi Yang;Shao-Hong Cai;Zheng-Wen Long;Hao Chen;Chao-Yun Long;College of Physics, Guizhou University;School of Information, Guizhou University of Finance and Economics;

【通讯作者】 蔡绍洪;隆正文;

【机构】 College of Physics, Guizhou UniversitySchool of Information, Guizhou University of Finance and Economics

【摘要】 We study a two-dimensional generalized Kemmer oscillator in the cosmic string spacetime with the magnetic field to better understand the contribution from gravitational field caused by topology defects, and present the exact solutions to the generalized Kemmer equation in the cosmic string with the Morse potential and Coulomb-liked potential through using the Nikiforov–Uvarov(NU) method and biconfluent Heun equation method, respectively. Our results give the topological defect’s correction for the wave function, energy spectrum and motion equation, and show that the energy levels of the generalized Kemmer oscillator rely on the angular deficit α connected with the linear mass density m of the cosmic string and characterized the metric’s structure in the cosmic string spacetime.

【Abstract】 We study a two-dimensional generalized Kemmer oscillator in the cosmic string spacetime with the magnetic field to better understand the contribution from gravitational field caused by topology defects, and present the exact solutions to the generalized Kemmer equation in the cosmic string with the Morse potential and Coulomb-liked potential through using the Nikiforov–Uvarov(NU) method and biconfluent Heun equation method, respectively. Our results give the topological defect’s correction for the wave function, energy spectrum and motion equation, and show that the energy levels of the generalized Kemmer oscillator rely on the angular deficit α connected with the linear mass density m of the cosmic string and characterized the metric’s structure in the cosmic string spacetime.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 11465006 and 11565009)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2020年07期
  • 【分类号】O572;TN752
  • 【下载频次】12
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