Scalar Particles’ Tunneling and Effect of Quantum Gravity  

Scalar Particles’ Tunneling and Effect of Quantum Gravity

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作  者:Guoping Li Xiaotao Zu 

机构地区:[1]School of Physical Electronics, University of Electronic Science and Technology of China, Chengdu, China

出  处:《Journal of Applied Mathematics and Physics》2015年第2期134-139,共6页应用数学与应用物理(英文)

摘  要:According to the generalized uncertainty principle (GUP), the Klein-Gordon equation is corrected by the quantum gravity exactly. Hence, the corrected Klein-Gordon equation will be more precise on the expression of the tunneling behavior. Then, the corrected Hawking temperature of the Gibbons-Maeda-Dilaton black hole is obtained near the horizon by quantum gravity. Analyzing the results carefully, it is obvious for us that the tunneling result is not only related to the mass of black hole, but also related to the mass and energy of outgoing fermions. Finally, we also infer that the tunneling radiation would be stopped at some particular temperature.According to the generalized uncertainty principle (GUP), the Klein-Gordon equation is corrected by the quantum gravity exactly. Hence, the corrected Klein-Gordon equation will be more precise on the expression of the tunneling behavior. Then, the corrected Hawking temperature of the Gibbons-Maeda-Dilaton black hole is obtained near the horizon by quantum gravity. Analyzing the results carefully, it is obvious for us that the tunneling result is not only related to the mass of black hole, but also related to the mass and energy of outgoing fermions. Finally, we also infer that the tunneling radiation would be stopped at some particular temperature.

关 键 词:The Quantum GRAVITY The Gibbons-Maeda-Dilaton Black Hole The Corrected KLEIN-GORDON Equation The Generalized Uncertainty PRINCIPLE 

分 类 号:P1[天文地球—天文学]

 

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