A solid-state high harmonic generation spectrometer with cryogenic cooling

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Abstract

Solid-state high harmonic generation (sHHG) spectroscopy is a promising technique for studying electronic structure, symmetry, and dynamics in condensed matter systems. Here, we report on the implementation of an advanced sHHG spectrometer based on a vacuum chamber and closed-cycle helium cryostat. Using an in situ temperature probe, it is demonstrated that the sample interaction region retains cryogenic temperature during the application of high-intensity femtosecond laser pulses that generate high harmonics. The presented implementation opens the door for temperature-dependent sHHG measurements down to a few Kelvin, which makes sHHG spectroscopy a new tool for studying phases of matter that emerge at low temperatures, which is particularly interesting for highly correlated materials.

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Kohrell, F., Nebgen, B. R., Spies, J. A., Hollinger, R., Zong, A., Uzundal, C., … Zuerch, M. (2024). A solid-state high harmonic generation spectrometer with cryogenic cooling. Review of Scientific Instruments, 95(2). https://doi.org/10.1063/5.0174407

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