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Title Estimates of Damped Equilibrium Emittance and Energy Spread in a Dual Energy Storage Ring
Authors Bhawin Dhital, Yaroslav Derbenev, David Douglas, Andrew Hutton, Geoffrey Krafft, Fanglei Lin, Vasiliy Morozov, Yuhong Zhang
JLAB number JLAB-ACP-21-3370
LANL number (None)
Other number DOE/OR/23177-5190
Document Type(s) (Meeting) 
Category: Beam Dynamics
Associated with EIC: Yes
Supported by Jefferson Lab LDRD Funding: No
Funding Source: Nuclear Physics (NP)
 

Meeting
Paper compiled for IPAC21

Proceedings
Proceedings of IPAC 2021
Edited By Liu Lin, John M. Byrd, Regis Neuenschwander, Renan Picoreti, Volker R. W. Schaa
JACOW (2021)
Page(s) 774-777
Publication Abstract: A dual energy storage ring design consists of two loops at markedly different energies. As in a single-energy storage ring, the linear optics in the ring design may be used to determine the damped equilibrium emittance and energy spread. Because the individual radiation events in the two rings are different and independent, we can provide analytical estimates of the damping times in a dual energy storage ring. Using the damping times, the values of damped energy spread, and emittance can be determined for a range of parameters related to lattice design and rings energies. We present analytical calculations along with simulation results to estimate the values of damped energy spread and emittance in a dual energy storage ring. We note that the damping time tends to be dominated by the damping time of the high energy ring in cases where the energy of the high energy rings is significantly greater than that of the low energy ring.
Experiment Numbers: other
Group: Ctr for Adv Stud of Accel
Document: pdf
DOI: https://doi.org/10.18429/JACoW-IPAC2021-MOPAB240
Accepted Manuscript: mopab240.pdf
Supporting Documents:
MOPAB2401.docxoriginal MS Word manuscript (Supporting)
Supporting Datasets: