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@InProceedings{toufexis:napac2019-tuybb6,
author = {F. Toufexis and V.A. Dolgashev and A. Landa},
title = {{Beam Dynamics in a High Gradient RF Streak Camera}},
booktitle = {Proc. NAPAC'19},
pages = {326--329},
paper = {TUYBB6},
language = {english},
keywords = {electron, cathode, experiment, photon, gun},
venue = {Lansing, MI, USA},
series = {North American Particle Accelerator Conference},
number = {4},
publisher = {JACoW Publishing, Geneva, Switzerland},
month = {10},
year = {2019},
issn = {2673-7000},
isbn = {978-3-95450-223-3},
doi = {10.18429/JACoW-NAPAC2019-TUYBB6},
url = {http://jacow.org/napac2019/papers/tuybb6.pdf},
note = {https://doi.org/10.18429/JACoW-NAPAC2019-TUYBB6},
abstract = {Traditionally, time-resolved experiments in storage ring synchrotron light sources and free-electron lasers are performed with short x-ray pulses with time duration smaller than the time resolution of the phenomenon under study. Typically, storage-ring synchrotron light sources produce x-ray pulses on the order of tens of picoseconds. Newer diffraction limited storage rings produce even longer pulses. We propose to use a high-gradient RF streak camera for time-resolved experiments in storage-ring synchrotron light sources with potential for sub-100 fs resolution. In this work we present a detailed analysis of the effects of the initial time and energy spread of the photo-emitted electrons on the time resolution, as well as a start-to-end beam dynamics simulation in an S-Band system.},
}