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Main Authors: Salazar, Ángel, Potosí, Quray, Laroze, David, Pérez, Laura M., de Zayas, Benjamín, Rojas, Clara
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2605.10497
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author Salazar, Ángel
Potosí, Quray
Laroze, David
Pérez, Laura M.
de Zayas, Benjamín
Rojas, Clara
author_facet Salazar, Ángel
Potosí, Quray
Laroze, David
Pérez, Laura M.
de Zayas, Benjamín
Rojas, Clara
contents In this article, we solved the time--independent one--dimensional Klein--Gordon equation in the presence of $α$--attractor potential using the Log derivative method. We calculated the reflection coefficient $\mathcal{R}$ and the transmission coefficient $\mathcal{T}$, showing that the superradiance phenomenon is present. In order to demonstrate the accuracy of our method, we performed a comparison with the analytical solution for the hyperbolic tangent potential.
format Preprint
id arxiv_https___arxiv_org_abs_2605_10497
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Study of the Superradiance Phenomenon in the $α$--attractor Potential using the Log Derivative Method
Salazar, Ángel
Potosí, Quray
Laroze, David
Pérez, Laura M.
de Zayas, Benjamín
Rojas, Clara
Quantum Physics
High Energy Physics - Theory
In this article, we solved the time--independent one--dimensional Klein--Gordon equation in the presence of $α$--attractor potential using the Log derivative method. We calculated the reflection coefficient $\mathcal{R}$ and the transmission coefficient $\mathcal{T}$, showing that the superradiance phenomenon is present. In order to demonstrate the accuracy of our method, we performed a comparison with the analytical solution for the hyperbolic tangent potential.
title Study of the Superradiance Phenomenon in the $α$--attractor Potential using the Log Derivative Method
topic Quantum Physics
High Energy Physics - Theory
url https://arxiv.org/abs/2605.10497