Acceleration-induced nonlocality: kinetic memory versus dynamic memory
arXiv:gr-qc/0110109 · doi:10.1002/1521-3889(200204)11:4<309::AID-ANDP309>3.0.CO;2-A
Abstract
The characteristics of the memory of accelerated motion in Minkowski spacetime are discussed within the framework of the nonlocal theory of accelerated observers. Two types of memory are distinguished: kinetic and dynamic. We show that only kinetic memory is acceptable, since dynamic memory leads to divergences for nonuniform accelerated motion.
LaTeX file, 6 PS figures, 34 pages
Cited by in corpus (14)
- Nonlocal Special Relativity
- Nonlocal Gravity: The General Linear Approximation
- Necessity of Acceleration-Induced Nonlocality
- Acceleration-Induced Nonlocality: Uniqueness of the Kernel
- Modification of the Doppler Effect due to the Helicity-Rotation Coupling
- Nonlocal Electrodynamics of Rotating Systems
- Quantum Theory in Accelerated Frames of Reference
- Nonlocal Electrodynamics of Linearly Accelerated Systems
- Constitutive law of nonlocal gravity
- Observers in Spacetime and Nonlocality
- Nonlocal Electrodynamics of Accelerated Systems
- Nonlocal Dirac Equation for Accelerated Observers
- Rotational Doppler Effect in Magnetic Resonance
- Nonlocal Effects in Black Body Radiation