A tunable low-energy photon source for high-resolution angle-resolved photoemission spectroscopy
arXiv:1704.03435 · doi:10.1063/1.4766962
Abstract
We describe a tunable low-energy photon source consisting of a laser-driven xenon plasma lamp coupled to a Czerny-Turner monochromator. The combined tunability, brightness, and narrow spectral bandwidth make this light source useful in laboratory-based high-resolution photoemission spectroscopy experiments. The source supplies photons with energies up to ~7 eV, delivering under typical conditions >10^12 ph/s within a 10 meV spectral bandwidth, which is comparable to helium plasma lamps and many synchrotron beamlines. We first describe the lamp and monochromator system and then characterize its output, with attention to those parameters which are of interest for photoemission experiments. Finally, we present angle-resolved photoemission spectroscopy data using the light source and compare its performance to a conventional helium plasma lamp.
References in corpus (1)
Cited by in corpus (4)
- Electronic structure of quantum materials studied by angle-resolved photoemission spectroscopy
- High Resolution Angle Resolved Photoemission with Tabletop 11eV Laser
- Work function seen with sub-meV precision through laser photoemission
- High repetition rate Time-Resolved VUV ARPES at 10.8 eV photon energy