activity
20082013
most citedTransverse instability of the antiproton beam in the Recycler Ring

2 citations · 3 across the 9 of their papers we have counts for

collaborators
Showing 2012Show all

5 papers · 1 filter

physics.acc-ph2012

Low-Energy Run of Fermilab Electron Cooler's Beam Generation System

L. R. Prost, A. Shemyakin, A. Fedotov +1

In the context of the evaluation of possibly using the Fermilab Electron Cooler for the proposed low-energy RHIC run at BNL, operating the cooler at 1.6 MeV electron beam energy wa…

physics.acc-ph20121 cited

Effect of transverse electron velocities on the longitudinal cooling force in the Fermilab electron cooler

Andrei Khilkevich, Lionel R. Prost, Alexander V. Shemyakin

In Fermilab's electron cooler, a 0.1A, 4.3MeV DC electron beam propagates through the 20 m cooling section, which is immersed in a weak longitudinal magnetic field. A proper adjust…

physics.acc-ph20122 cited

Transverse instability of the antiproton beam in the Recycler Ring

L. R. Prost, C. M. Bhat, A. Burov +4

The brightness of the antiproton beam in Fermilab's 8 GeV Recycler ring is limited by a transverse instability. This instability has occurred during the extraction process to the T…

physics.acc-ph2012

Low-energy run of Fermilab Electron Cooler's beam generation system

Lionel Prost, Alexander Shemyakin, Alexei Fedotov +1

As a part of a feasibility study of using the Fermilab Electron Cooler for a low-energy Relativistic Heavy Ion Collider (RHIC) run at Brookhaven National Laboratory (BNL), the cool…

physics.acc-ph2012

Effect of secondary ions on the electron beam optics in the Recycler Electron Cooler

A. Shemyakin, L. Prost, G. Saewert

Antiprotons in Fermilab's Recycler ring are cooled by a 4.3 MeV, 0.1 - 0.5 A DC electron beam (as well as by a stochastic cooling system). The unique combination of the relativisti…