From the 1 of 9 linked papers with an AI index.
9 papers
Squeezed quantum states and partner modes in the moving mirror model of black hole evaporation
Kuan-Nan Lin, Pisin Chen, Michael R. R. Good +1
The standard moving mirror model in (1+1)-dimensional spacetime is known to reproduce several quantum aspects of black hole evaporation. A perfectly reflecting, accelerating mirror…
Optical and thermodynamic properties of Kerr-Bertotti-Robinson black holes
Hassan Hassanabadi, Michael R. R. Good, Soroush Zare +2
The paper studies how a rotating Kerr black hole immersed in a Bertotti‑Robinson electromagnetic field behaves thermodynamically and optically, deriving quantities like temperature…
An advanced undergraduate derivation of acceleration thermality
Michael R. R. Good
The thermal radioactivity of beta-decay photons, described by a 1D Planck distribution, can be modeled as classical radiation emitted by an accelerated electron. Here, we present t…
Frenet-Serret equations with variable proper acceleration in Minkowski spacetime
Ivan Perez-Roman, Michael R. R. Good, Yen Chin Ong +1
We study Frenet-Serret equations for timelike worldlines in Minkowski spacetime with proper-time-dependent curvature and torsion. This corresponds to relativistic motion with non-u…
Apparent Fermionic Spectra for Bosonic Radiation: Accelerated Charge Kinematics
Michael R. R. Good, Evgenii Ievlev, Arsen Almaskhan
An accelerated point charge can emit photons with an apparent Fermi-Dirac spectrum, even though the radiation is bosonic and its occupation numbers are not constrained to 0 or 1. T…
Planckian Gravitons from an Imaginary-Time Clock
Michael R. R. Good, Eric V. Linder
We present a simple derivation of the exact Planck spectrum of the quadrupole radiation from point masses moving apart nonrelativistically, essentially an analog for gravitational…