21 citations · 28 across the 3 of their papers we have counts for
7 papers
Measurement of Spin-Polarized Photoemission from Wurtzite and Zinc-Blende Gallium Nitride Photocathodes
S. J. Levenson, M. B. Andorf, B. D. Dickensheets +7
Spin-polarized photoemission from wurtzite and zinc-blende gallium nitride (GaN) photocathodes has been observed and measured for the first time. The p-doped GaN photocathodes were…
Simulation of the transit-time optical stochastic cooling process in the Cornell Electron Storage Ring
S. T. Wang, M. B. Andorf, I. V. Bazarov +4
In preparation for a demonstration of optical stochastic cooling in the Cornell Electron Storage Ring (CESR) we have developed a particle tracking simulation to study the relevant…
Conceptual Design Report: Optical Stochastic Cooling at IOTA
V. Lebedev, J. Jarvis, H. Piekarz +3
The paper presents a journal version of the Design Report on the Optical Stochastic Cooling experiment to be carried out at IOTA ring in Fermilab later this year. It discusses the…
Optical Stochastic Cooling with an Arc-Bypass in CESR
M. B. Andorf, W. F. Bergan, I. V. Bazarov +4
A proposed experiment to demonstrate Optical Stochastic Cooling (OSC) in the Cornell Electron Storage Ring (CESR) based on an arc-bypass design is presented. This arc-bypass provid…
The Role of Low Intrinsic Emittance in Modern Photoinjector Brightness
Christopher M. Pierce, Matthew B. Andorf, Edmond Lu +8
Reducing the intrinsic emittance of photocathodes is one of the most promising routes to improving the brightness of electron sources. However, when emittance growth occurs during…
Computation and Numerical Simulation of Focused Undulator Radiation for Optical Stochastic Cooling
Matthew Andorf, Valeri Lebedev, Jonathan Jarvis +1
Optical stochastic cooling (OSC) is a promising technique for the cooling of dense particle beams. Its operation at optical frequencies enables obtaining a much larger bandwidth co…