We analyse the evolution of a generalized bosonic oscillator in the near horizon geometry of the BTZ black hole by analytically obtaining a solution of the associated Klein-Gordon equation. We show that it is possible to obtain relativistic frequency expression in closed-form for the system in question. Here, we observe that such a system decays in time without any real oscillation and the damped modes depend explicitly on the parameters of the oscillator coupling besides the parameters of the background geometry. This result allows us to analyse the influences of both oscillator coupling and spacetime parameters on the evolution of such a test field. Also, the results indicate that the spacetime background is stable under this perturbation field.
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Utah State Univ, Dept Phys, 4415 Old Main Hill Rd, Logan, UT 84322 USAUtah State Univ, Dept Phys, 4415 Old Main Hill Rd, Logan, UT 84322 USA
Ciafre, Jacob
Rodriguez, Maria J.
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Utah State Univ, Dept Phys, 4415 Old Main Hill Rd, Logan, UT 84322 USA
Albert Einstein Inst, Max Planck Gravitat Phys, Muhlenberg 1, D-14476 Potsdam, GermanyUtah State Univ, Dept Phys, 4415 Old Main Hill Rd, Logan, UT 84322 USA
机构:
Univ Arizona, Dept Phys, 1118 E Fourth St, Tucson, AZ 85721 USAUniv Arizona, Dept Phys, 1118 E Fourth St, Tucson, AZ 85721 USA
Gralla, Samuel E.
Ravishankar, Arun
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Univ Arizona, Dept Phys, 1118 E Fourth St, Tucson, AZ 85721 USAUniv Arizona, Dept Phys, 1118 E Fourth St, Tucson, AZ 85721 USA
Ravishankar, Arun
Zimmerman, Peter
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Max Planck Inst Gravitat Phys, Albert Einstein Inst, Muhlenberg 1, D-14476 Potsdam, GermanyUniv Arizona, Dept Phys, 1118 E Fourth St, Tucson, AZ 85721 USA