activity
20172024
most citedThe Role of Low Intrinsic Emittance in Modern Photoinjector Brightness

21 citations · 28 across the 3 of their papers we have counts for

collaborators

7 papers

physics.acc-ph2024

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…

physics.acc-ph2021

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…

physics.acc-ph2020

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…

physics.acc-ph2020

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…

physics.acc-ph202021 cited

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…

physics.acc-ph2018

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…