Abstract
In this paper, by applying the Lagrangian analysis on the action, we first redefine the geodesic equation of the charged massive particle. Then, basing on the new definition of the geodesic equation, we revisit the Hawking radiation of the charged massive particle via tunneling from the event horizon of the Kaluza-Klein black hole. In our treatment, the geodesic equation of the charged massive particle is defined uniformly with that of the massless particle, which overcomes the shortcomings of its previous definition, and is more suitable for the tunneling mechanism. The highlight of our work is a new and important development for the Parikh-Wilczek’s tunneling method.
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Acknowledgments
This work is supported by the Program for NCET-12-1060, by the Sichuan Youth Science and Technology Foundation with Grant No. 2011JQ0019, and by FANEDD with Grant No. 201319, and by the Innovative Research Team in College of Sichuan Province with Grant No. 13TD0003, and by Sichuan Natural Science Foundation with Grant No. 16ZB0178, and by the starting fund of China West Normal University with Grant No.14D014.
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Pu, J., Han, Y. Hawking Radiation of the Charged Particle via Tunneling from the Kaluza-Klein Black Hole. Int J Theor Phys 55, 5077–5085 (2016). https://doi.org/10.1007/s10773-016-3129-1
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DOI: https://doi.org/10.1007/s10773-016-3129-1