We present an experimental apparatus to investigate electron transport and thermalization in cryogenic para-hydrogen crystal matrices. This paper describes the techniques used to grow and characterize the cryogenic para-hydrogen crystals, the optical system employed to photoextract electrons, and the charge collection system used to study the behavior of electrons within the solid matrix. By probing the fundamental charge transport and energy loss processes in a quantum solid, such as para-hydrogen, this study paves the way for future precision experiments that leverage the unique properties of cryogenic crystal matrices.

Antonini, P., Benettoni, M., Borghesani, A.F., Braggio, C., Calabrese, R., Carugno, G., et al. (2025). An Experimental Setup to Study Electron Transport and Thermalization in Cryogenic Para-Hydrogen Crystal Matrices. INSTRUMENTS, 9(3) [10.3390/instruments9030016].

An Experimental Setup to Study Electron Transport and Thermalization in Cryogenic Para-Hydrogen Crystal Matrices

Khanbekyan, Alen;Mariotti, Emilio;
2025-01-01

Abstract

We present an experimental apparatus to investigate electron transport and thermalization in cryogenic para-hydrogen crystal matrices. This paper describes the techniques used to grow and characterize the cryogenic para-hydrogen crystals, the optical system employed to photoextract electrons, and the charge collection system used to study the behavior of electrons within the solid matrix. By probing the fundamental charge transport and energy loss processes in a quantum solid, such as para-hydrogen, this study paves the way for future precision experiments that leverage the unique properties of cryogenic crystal matrices.
2025
Antonini, P., Benettoni, M., Borghesani, A.F., Braggio, C., Calabrese, R., Carugno, G., et al. (2025). An Experimental Setup to Study Electron Transport and Thermalization in Cryogenic Para-Hydrogen Crystal Matrices. INSTRUMENTS, 9(3) [10.3390/instruments9030016].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/1296054