arXiv · 1003.1625
Black Holes and Photons with Entropic Force
Abstract
We study entropic force effects on black holes and photons. We find that application of an entropic analysis restricts the radial change $ΔR$ of a black hole of radius $R_{\mathrm{H}}$, due to a test particle of a Schwartzchild radius $R_{h}$ moving towards the black hole by $Δx$ near black body surface, to be given by a relation $R_{\mathrm{H}} ΔR= R_h Δx/2$, or ${ΔR}/{\lambdabar_M} = {Δx}/{2 \lambdabar_m}$. We suggest a new rule regarding entropy changes in different dimensions, $ΔS= 2πk D Δl /\lambdabar,$ which unifies Verlinde's conjecture and the black hole entropy formula. We also propose to extend the entropic force idea to massless particles such as a photon. We find that there is an entropic force on a photon of energy $E_γ$, with $F=G M m_γ/R^2$, and therefore the photon has an effective gravitational mass $m_γ= E_γ/c^2$.
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Xiao-Gang He, Bo-Qiang Ma. 2010-03-10. Black Holes and Photons with Entropic Force. https://doi.org/10.1088/0256-307x%2F27%2F7%2F070402
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