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Title Charge production studies from Cs2Te photocathodes in a normal conducting RF gun
Authors Carlos Hernandez-Garcia, M. Kraslinikov, G. Asova, M. Bakr, P. Boonpornprasert, J. Good, M. Gross, H. Huck, I. Isaev, D. Kalantaryan, M. Khojoyan, G. Kourkafas, O. Lishilin, D. Malyutin, D. Melkumyan, A. Oppelt, M. Otevrel, G. Pathak, Y. Renier, T. Rublack, F. Stephan, G. Vashchenko, Q. Zhao
JLAB number JLAB-ACC-16-2261
LANL number arXiv:1607.00295
Other number DOE/OR/23177-4197
Document Type(s) (Journal Article) 
Associated with EIC: No
Supported by Jefferson Lab LDRD Funding: No
Funding Source: Nuclear Physics (NP)
Citation (AIP): C. Hernandez-Garcia, et al., Nucl. Instrum. Meth. A871 (2017) 97–104.
Publication Abstract: This paper discusses the behavior of electron bunch charge produced in an L-band normal conducting radio frequency cavity (RF gun) from Cs2Te photocathodes illuminated with ps-long UV laser pulses when the laser transverse distribution consists of a flat-top core with Gaussian-like decaying halo. The produced charge shows a linear dependence at low laser pulse energies as expected in the quantum efficiency limited emission regime, while its dependence on laser pulse energy is observed to be much weaker for higher values, due to space charge limited emission. However, direct plug-in of experimental parameters into the space charge tracking code ASTRA yields lower output charge in the space charge limited regime compared to measured values. The rate of increase of the produced charge at high laser pulse energies close to the space charge limited emission regime seems to be proportional to the amount of halo present in the radial laser profile since the charge from the core has saturated already. By utilizing core + halo particle distributions based on measured radial laser profiles, ASTRA simulations and semi-analytical emission models reproduce the behavior of the measured charge for a wide range of RF gun and laser operational parameters within the measurement uncertainties.
Experiment Numbers:
Group: Ctr for Injectors&Sources
Document: pdf
DOI: https://doi.org/10.1016/j.nima.2017.06.051
Accepted Manuscript:
Supporting Documents:
PITZ Emission manuscript 3 final after JLab rev.pdfRevised version after S. Benson's comments (Supporting)
Supporting Datasets: