Quantum Ground State and Minimum Emittance of a Fermionic Particle Beam in a Circular Accelerator
Accelerator Physics
2017-08-23 v2
Abstract
In the usual parameter regime of accelerator physics, particle ensembles can be treated as classical. If we approach a regime where \epsilon_x\epsilon_y\epsilon_s \approx N_{particles}\lambda_{Compton}^3\, however, the granular structure of quantum-mechanical phase space becomes a concern. In particular, we have to consider the Pauli exclusion principle, which will limit the minimum achievable emittance for a beam of fermions. We calculate these lowest emittances for the cases of bunched and coasting beams at zero temperature and their first-order change rate at finite temperature.
Cite
@article{arxiv.physics/0102064,
title = {Quantum Ground State and Minimum Emittance of a Fermionic Particle Beam in a Circular Accelerator},
author = {Andreas Kabel},
journal= {arXiv preprint arXiv:physics/0102064},
year = {2017}
}
Comments
6 Pages, 1 figure