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RIS citation export for TUPML061: Study of Mean Transverse Energy of (N)UNCD with Tunable Laser Source

TY - CONF
AU - Chen, G.
AU - Adhikari, G.
AU - Antipov, S.P.
AU - Baryshev, S.V.
AU - Jing, C.-J.
AU - Kovi, K.
AU - Schroeder, W.A.
AU - Spentzouris, L.K.
ED - Koscielniak, Shane
ED - Satogata, Todd
ED - Schaa, Volker RW
ED - Thomson, Jana
TI - Study of Mean Transverse Energy of (N)UNCD with Tunable Laser Source
J2 - Proc. of IPAC2018, Vancouver, BC, Canada, April 29-May 4, 2018
C1 - Vancouver, BC, Canada
T2 - International Particle Accelerator Conference
T3 - 9
LA - english
AB - There is a strong motivation to develop and understand novel materials with the potential to be utilized as photocathodes, as these could have desirable photoemission properties for research and industrial applications. Nitrogen-incorporated ultrananocrystalline diamond ((N)UNCD) photocathodes have potential to become a material of choice for photocathode applications*. (N)UNCD has high quantum efficiency when processed in hydrogen plasma*, low surface roughness, and high electron conductivity through the bulk**. The mean transverse energy (MTE) was calculated for (N)UNCD thin films using the double-solenoid scan method. (N)UNCD thin film with thickness of 160nm was deposited on highly-doped silicon substrate. Studies of the MTE of a (N)UNCD sample were done using a tunable laser source with photon energies of 3.56 eV to 5.26 eV. These results are presented.
PB - JACoW Publishing
CP - Geneva, Switzerland
SP - 1677
EP - 1679
KW - solenoid
KW - photon
KW - cathode
KW - electron
KW - laser
DA - 2018/06
PY - 2018
SN - 978-3-95450-184-7
DO - 10.18429/JACoW-IPAC2018-TUPML061
UR - http://jacow.org/ipac2018/papers/tupml061.pdf
ER -