TY - GEN
T1 - High-fidelity 3d modulator simulations of coherent electron cooling systems
AU - Bell, G.
AU - Bruhwiler, D.
AU - Schwartz, B.
AU - Pogorelov, I.
AU - Litvinenko, V. N.
AU - Wang, G.
AU - Hao, Y.
PY - 2012
Y1 - 2012
N2 - Next generation electron-hadron colliders will require effective cooling of high-energy, high-intensity hadron beams. Coherent electron cooling (CeC) can in principle cool relativistic hadron beams on orders-of-magnitude shorter time scales than other techniques [1]. The parallel Vorpal framework is used for 3D delta-f PIC simulations of anisotropic Debye shielding in a full longitudinal slice of the co-propagating electron beam, choosing parameters relevant to the proof-of-principle experiment under development at BNL. The transverse density conforms to an exponential Vlasov equilibrium for Gaussian velocities, with no longitudinal density variation. Comparison with 1D1V Vlasov/Poisson simulations shows good agreement in 1D. Parallel 3D simulations at NERSC show 3D effects for ions moving longitudinally and transversely. Simulation results are comparedwith the constant-density theory ofWang and Blaskiewicz [2].
AB - Next generation electron-hadron colliders will require effective cooling of high-energy, high-intensity hadron beams. Coherent electron cooling (CeC) can in principle cool relativistic hadron beams on orders-of-magnitude shorter time scales than other techniques [1]. The parallel Vorpal framework is used for 3D delta-f PIC simulations of anisotropic Debye shielding in a full longitudinal slice of the co-propagating electron beam, choosing parameters relevant to the proof-of-principle experiment under development at BNL. The transverse density conforms to an exponential Vlasov equilibrium for Gaussian velocities, with no longitudinal density variation. Comparison with 1D1V Vlasov/Poisson simulations shows good agreement in 1D. Parallel 3D simulations at NERSC show 3D effects for ions moving longitudinally and transversely. Simulation results are comparedwith the constant-density theory ofWang and Blaskiewicz [2].
UR - https://www.scopus.com/pages/publications/84885583556
M3 - Conference contribution
AN - SCOPUS:84885583556
SN - 9783954501151
T3 - IPAC 2012 - International Particle Accelerator Conference 2012
SP - 3231
EP - 3233
BT - IPAC 2012 - International Particle Accelerator Conference 2012
T2 - 3rd International Particle Accelerator Conference 2012, IPAC 2012
Y2 - 20 May 2012 through 25 May 2012
ER -