We investigate the motion of a wave packet of a charged scalar particle linearly accelerated by a static potential in quantum electrodynamics. We calculate the expectation value of the position of the charged particle after the acceleration to first order in the fine structure constant in the ℏ→0 limit. We find that the change in the expectation value of the position (the position shift) due to radiation reaction agrees exactly with the result obtained using the Lorentz-Dirac force in classical electrodynamics. We also point out that the one-loop correction to the potential may contribute to the position change in this limit
We study the electromagnetic fields of an arbitrarily moving charged particle and the radiation reac...
The interaction between a plane wave and a classical charged particle is reviewed in this paper. A m...
The interaction between a plane wave and a classical charged particle is reviewed in this paper. A m...
We extend our previous work (see arXiv:quant-ph/0501026), which compared the predictions of quantum ...
The Lorentz-Dirac radiation reaction formula predicts that the position shift of a charged particle ...
Within the frameworks of Classical and Quantum Electrodynamics, the behavior of relativistic charged...
This thesis reports on work undertaken in comparing the effects of the phenomenon of radiation react...
Abstract: This thesis reports on work undertaken in comparing the effects of the phenomenon of radia...
A model detector undergoing constant, infinite-duration acceleration converges to an equilibrium sta...
[[abstract]]We provide a quantum field theoretical derivation of the Abraham-Lorentz-Dirac (ALD) equ...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
Abstract: This thesis reports on work undertaken in comparing the effects of the phenomenon of radi...
We study the behaviour of a particle in an attractive Coulomb potential according to the nonrelativi...
[[abstract]]We calculate the energy radiated by Lorentz electrons accelerated in uniform electromagn...
The classical equation of motion of a charged point particle, including its radiation reaction, is d...
We study the electromagnetic fields of an arbitrarily moving charged particle and the radiation reac...
The interaction between a plane wave and a classical charged particle is reviewed in this paper. A m...
The interaction between a plane wave and a classical charged particle is reviewed in this paper. A m...
We extend our previous work (see arXiv:quant-ph/0501026), which compared the predictions of quantum ...
The Lorentz-Dirac radiation reaction formula predicts that the position shift of a charged particle ...
Within the frameworks of Classical and Quantum Electrodynamics, the behavior of relativistic charged...
This thesis reports on work undertaken in comparing the effects of the phenomenon of radiation react...
Abstract: This thesis reports on work undertaken in comparing the effects of the phenomenon of radia...
A model detector undergoing constant, infinite-duration acceleration converges to an equilibrium sta...
[[abstract]]We provide a quantum field theoretical derivation of the Abraham-Lorentz-Dirac (ALD) equ...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
Abstract: This thesis reports on work undertaken in comparing the effects of the phenomenon of radi...
We study the behaviour of a particle in an attractive Coulomb potential according to the nonrelativi...
[[abstract]]We calculate the energy radiated by Lorentz electrons accelerated in uniform electromagn...
The classical equation of motion of a charged point particle, including its radiation reaction, is d...
We study the electromagnetic fields of an arbitrarily moving charged particle and the radiation reac...
The interaction between a plane wave and a classical charged particle is reviewed in this paper. A m...
The interaction between a plane wave and a classical charged particle is reviewed in this paper. A m...