Towards full surface Brillouin zone mapping by coherent multi-photon photoemission

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Abstract

We report a novel approach for coherent multi-photon photoemission in the entire Brillouin zone with infrared light that is readily implemented in a laboratory setting. We excite a solid state material, Ag(110), with intense femtosecond laser pulses to excite higher-order multi-photon photoemission; angle-resolved electron spectroscopic acquisition records photoemission at large in-plane momenta involving optical transitions from the occupied to unoccupied bands of the sample that otherwise might remain hidden by the photoemission horizon. We propose this as a complementary ultrafast method to time- and angle-resolved two-color, e.g. infrared pump and extreme ultraviolet probe, photoemission spectroscopy, with the advantage of being able to measure and control the coherent electron dynamics.

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Li, A., James, N. A., Wang, T., Wang, Z., Petek, H., & Reutzel, M. (2020). Towards full surface Brillouin zone mapping by coherent multi-photon photoemission. New Journal of Physics, 22(7). https://doi.org/10.1088/1367-2630/ab98d6

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