Results 71 to 80 of about 2,068 (173)
We investigate the thermodynamic stability and phase structure of black holes in logarithmic nonlinear electrodynamics (LNED) with non-perturbative exponential corrections to the Bekenstein–Hawking entropy.
Aram Bahroz Brzo +2 more
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Integrated Fabry–Perot Cavities: A Quantum Leap in Technology
Integrated Fabry–Perot cavities (IFPCs), often referred to as nanobeams due to their form factor and size, have profoundly modified the landscape of integrated photonics as a new building block for classical and quantum engineering.
Philippe Velha
doaj +1 more source
Transverse recoil imprinted on free-electron radiation
Phenomena of free-electron X-ray radiation are treated almost exclusively with classical electrodynamics, despite the intrinsic interaction being that of quantum electrodynamics. The lack of quantumness arises from the vast disparity between the electron
Xihang Shi +4 more
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Locality, QED and classical electrodynamics
Abstract We report on some conceptual changes in our present understanding of Quantum Field Theory and muse about possible consequences for the understanding of v > c signals.
openaire +3 more sources
On stability of renormalized classical electrodynamics
It is shown that the total energy of the static "field + particle" system, defined in the framework of classical, renormalized electrodynamics of particles and fields, depends in an unstable way upon the field boundary data. It is argued that this phenomenon may be also an origin of the unstable dynamical behaviour of the system (i.e.
Kijowski, Jerzy, Kościelecki, Marcin
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A tiny Drude scatterer can accurately model a coherent emitter in nanophotonics
We add a missing element to the set of directly computable scenarios of light-matter-interaction within classical numerical Maxwell solvers, i.e., light scattering from hybrid systems of resonators and individual Fourier-limited emitters.
Binkowski Felix +2 more
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The Maxwell’s equations for a mechano-driven media system (MEs-f-MDMS)
In classical electrodynamics, by motion, it always means a relative movement of two observers in inertia reference frames, so that the covariance of the Maxwell’s equations is preserved respectively in two spaces under Lorentz transformation.
Zhong Lin Wang
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A Simple Understanding of Quantum Electrodynamics Using Bohmian Trajectories: Detecting Non-Ontic Photons. [PDF]
Seoane JJ, Benali A, Oriols X.
europepmc +1 more source
Entropic Dynamics Approach to Quantum Electrodynamics. [PDF]
Caticha A.
europepmc +1 more source

