A precision apparatus for high harmonic spectroscopy in bulk solids

Fuente: arXiv
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Main Authors: Mandal, S., Kumar, P., Pi, Z., Kim, H. Y., Zhan, M., Goulielmakis, E.
Format: Preprint
Published: 2025
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author Mandal, S.
Kumar, P.
Pi, Z.
Kim, H. Y.
Zhan, M.
Goulielmakis, E.
author_facet Mandal, S.
Kumar, P.
Pi, Z.
Kim, H. Y.
Zhan, M.
Goulielmakis, E.
contents High harmonic generation (HHG) in solids has emerged as a powerful spectroscopic method for resolving ultrafast electron dynamics and band structure properties across a wide range of materials. However, quantitative HHG studies require instrumentation capable of delivering stable driving fields, precise crystal alignment, and broadband detection spanning the UV to the extreme ultraviolet (EUV). Here we present an integrated apparatus engineered specifically for high-accuracy, field-strength and orientation-dependent HHG measurements in bulk solids. The system incorporates dispersion-neutral intensity-control for few-cycle pulses, a vacuum HHG module with sub-micrometer and sub-degree sample positioning, and an imaging assembly that stabilizes the focal spot position and enables spatial filtering of the emitted harmonics. A synchronized dual-spectrometer scheme provides simultaneous UV/VUV and EUV radiation detection, while absolute electric field calibration is achieved through gas-phase attosecond streaking. Together, these capabilities establish a versatile and quantitatively reliable platform for solid-state HHG spectroscopy. The methodology is broadly adaptable to various laser sources and material classes, and supports future efforts aimed at reconstructing valence-electron potentials, tracking strong-field dynamics, and mapping electronic structure with sub-cycle temporal resolution.
format Preprint
id arxiv_https___arxiv_org_abs_2512_13311
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A precision apparatus for high harmonic spectroscopy in bulk solids
Mandal, S.
Kumar, P.
Pi, Z.
Kim, H. Y.
Zhan, M.
Goulielmakis, E.
Optics
High harmonic generation (HHG) in solids has emerged as a powerful spectroscopic method for resolving ultrafast electron dynamics and band structure properties across a wide range of materials. However, quantitative HHG studies require instrumentation capable of delivering stable driving fields, precise crystal alignment, and broadband detection spanning the UV to the extreme ultraviolet (EUV). Here we present an integrated apparatus engineered specifically for high-accuracy, field-strength and orientation-dependent HHG measurements in bulk solids. The system incorporates dispersion-neutral intensity-control for few-cycle pulses, a vacuum HHG module with sub-micrometer and sub-degree sample positioning, and an imaging assembly that stabilizes the focal spot position and enables spatial filtering of the emitted harmonics. A synchronized dual-spectrometer scheme provides simultaneous UV/VUV and EUV radiation detection, while absolute electric field calibration is achieved through gas-phase attosecond streaking. Together, these capabilities establish a versatile and quantitatively reliable platform for solid-state HHG spectroscopy. The methodology is broadly adaptable to various laser sources and material classes, and supports future efforts aimed at reconstructing valence-electron potentials, tracking strong-field dynamics, and mapping electronic structure with sub-cycle temporal resolution.
title A precision apparatus for high harmonic spectroscopy in bulk solids
topic Optics
url https://arxiv.org/abs/2512.13311