Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10672493 | Ultramicroscopy | 2015 | 10 Pages |
Abstract
We present a spin resolving “momentum microscope” for the high resolution imaging of the momentum distribution of photoelectrons. Measurements of the band structure of a Au(111) single crystal surface demonstrate an energy resolution of ÎE=12meV and a momentum resolution of Îkâ¥=0.0049AËâ1, measured at the line-width of the spin-orbit split Shockley surface state. The relative accuracy of the k⥠measurement in the order of 10â4AËâ1 reveals a deviation from the ideal two-dimensional free electron gas model of the Shockley surface state, manifested in a threefold radial symmetry. Spin resolution in the full momentum image is obtained by an imaging spin-filter based on low-energy electron diffraction at a Au passivated Ir(100) single crystal. Using working points at 10.5 eV and 11.5 eV scattering energy with a completely reversed asymmetry of ±60% we demonstrate the efficient mapping of the spin texture of the Au(111) surface state.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
Christian Tusche, Alexander Krasyuk, Jürgen Kirschner,