One-stage hollow-core fiber-based compression of Yb:KGW lasers to the single-cycle regime

Fuente: arXiv
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Main Authors: Pi, Z., Enders, A. B., Vaso, D., Goulielmakis, E.
Format: Preprint
Published: 2025
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author Pi, Z.
Enders, A. B.
Vaso, D.
Goulielmakis, E.
author_facet Pi, Z.
Enders, A. B.
Vaso, D.
Goulielmakis, E.
contents The generation of intense, waveform-controlled, single-cycle pulses based on Yb:KGW amplifiers is central to integrating these lasers with attosecond metrology and spectroscopy. Here, we demonstrate single-stage, multi-octave (~ 2.4 octaves) spectral broadening of Yb:KGW amplified pulses in a neon-pressurized hollow-core fiber (HCF) capillary and their compression to the single-cycle regime (1.1 cycles at 880 nm) using chirped mirrors. Utilizing Homochromatic Attosecond Streaking (HAS), we characterize the field waveforms of the generated pulses and demonstrate precise control of their carrier-envelope phase. Our results provide a simplified route to single-cycle pulse generation using Yb:KGW technology, previously possible only with Ti:Sapphire-based front ends. This work paves the way for advanced applications in attosecond science, strong-field physics, and spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2504_12064
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle One-stage hollow-core fiber-based compression of Yb:KGW lasers to the single-cycle regime
Pi, Z.
Enders, A. B.
Vaso, D.
Goulielmakis, E.
Optics
The generation of intense, waveform-controlled, single-cycle pulses based on Yb:KGW amplifiers is central to integrating these lasers with attosecond metrology and spectroscopy. Here, we demonstrate single-stage, multi-octave (~ 2.4 octaves) spectral broadening of Yb:KGW amplified pulses in a neon-pressurized hollow-core fiber (HCF) capillary and their compression to the single-cycle regime (1.1 cycles at 880 nm) using chirped mirrors. Utilizing Homochromatic Attosecond Streaking (HAS), we characterize the field waveforms of the generated pulses and demonstrate precise control of their carrier-envelope phase. Our results provide a simplified route to single-cycle pulse generation using Yb:KGW technology, previously possible only with Ti:Sapphire-based front ends. This work paves the way for advanced applications in attosecond science, strong-field physics, and spectroscopy.
title One-stage hollow-core fiber-based compression of Yb:KGW lasers to the single-cycle regime
topic Optics
url https://arxiv.org/abs/2504.12064