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Filamentation-Assisted Isolated Attosecond Pulse Generation

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arxiv 2412.06339 v1 pith:TKFNSMCD submitted 2024-12-09 physics.optics physics.app-phphysics.plasm-ph

classification physics.opticsphysics.app-phphysics.plasm-ph
keywords iapsgenerationattosecondfilamentationpulsepulsesattosecondscell
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Isolated attosecond pulses (IAPs) generated by few-cycle femtosecond lasers are essential for capturing ultrafast dynamics in atoms, molecules, and solids. Nonetheless, the advancement of attosecond science critically depends on achieving stable, high-temporal-contrast IAPs. Our study reveals a universal scenario in which self-compression of the infrared driver in high harmonic generation in extended gas media leads to high-contrast high-frequency IAP generation. Our experimental and theoretical results reveal that filamentation in a semi-infinite gas cell not only shapes the infrared driving pulse spatially and temporally, but also creates a stable propagation region where high harmonic generation is phase-matched, leading to the production of bright IAPs. In an argon-filled gas cell, filamentation notably reduces the pulse duration of Yb-based 1030 nm pulses from 4.7 fs to 3.5 fs, while simultaneously generating high-contrast 200-attosecond IAPs at 70 eV. We demonstrate the universality of filamentation-assisted IAP generation, showing that post-compressed Yb-based laser filaments in neon and helium yield even shorter IAPs: 69-attoseconds at 100 eV, and 65-attoseconds IAPs at 135 eV, respectively. This spatiotemporal reshaping of few-cycle pulses through filamentation possesses immediate impacts on both post-compression techniques and attosecond-based technologies.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Bright 25-attosecond light pulses reach the one atomic unit of time

    physics.atom-ph 2025-08 conditional novelty 6.0 of 10

    The paper reports generation and streaking characterization of 25±2 attosecond soft-X-ray pulses, a new record, with photon flux above 10^12 photons/s.

  2. Enhanced Control of High Harmonic Generation in Mixed Argon-Helium Gaseous Media

    physics.optics 2025-07 conditional novelty 5.0 of 10

    Simulations show that mixing argon and helium, or placing them in two displaced jets, tunes high harmonic spectra through species-dependent interference.

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