Multispectral time-resolved energy-momentum microscopy using high-harmonic extreme ultraviolet radiation
arXiv:2203.11121 · doi:10.1063/5.0091003
Abstract
A 790-nm-driven high-harmonic generation source with a repetition rate of 6 kHz is combined with a toroidal-grating monochromator and a high-detection-efficiency photoelectron time-of-flight momentum microscope to enable time- and momentum-resolved photoemission spectroscopy over a spectral range of - eV with sub-100-fs time resolution. Three-dimensional (3D) Fermi surface mapping is demonstrated on graphene-covered Ir(111) with energy and momentum resolutions of meV and , respectively. The table-top experiment sets the stage for measuring the -dependent ultrafast dynamics of 3D electronic structure, including band structure, Fermi surface, and carrier dynamics in 3D materials as well as 3D orbital dynamics in molecular layers.
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Cited by in corpus (5)
- Time- and Angle-Resolved Photoemission Studies of Quantum Materials
- Advancing time- and angle-resolved photoemission spectroscopy: The role of ultrafast laser development
- High harmonic generation light source with polarization selectivity and sub-100-m beam size for time- and angle-resolved photoemission spectroscopy
- A minimalist approach to 3D photoemission orbital tomography: algorithms and data requirements
- Femtosecond concerted rotation of molecules on a 2D material interface