Quantum mechanics of radiofrequency-driven coherent beam oscillations in storage rings
arXiv:2111.08444 · doi:10.1103/PhysRevAccelBeams.26.014201
Abstract
Precision searches for the electric dipole moment of protons in storage ring experiments call for beam-position monitoring in the picometer range. We present the relevant fully quantum mechanical derivation of radiofrequency-driven collective oscillations of a beam in a storage ring.
5 pages
References in corpus (6)
- Ultrasensitive force and displacement detection using trapped ions
- Equivalence principle and experimental tests of gravitational spin effects
- Parametrization of the Driven Betatron Oscillation
- Manifestations of the rotation and gravity of the Earth in high-energy physics experiments
- Toward polarized antiprotons: Machine development for spin-filtering experiments
- Spin Rotation by Earth's Gravitational Field in a "Frozen-Spin" Ring