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April 18, 2026Nature Communications1 citationsOpen Access

Filaments of light dynamically isolate a single attosecond pulse

OGO. Ghafur

Key Points

  • The aim is to determine how light filaments can be used to isolate single attosecond pulses without complex setups.
  • Utilized a driving laser matched to a self-focusing threshold in an extended gas cell.
  • Monitored the propagation characteristics of a nonlinear light filament.
  • Analyzed the changes in medium properties affecting light fields synchronization.
  • Attained dynamic isolation of attosecond pulses within the filament.
  • Observed reduction in complexity by eliminating external optical gating needs.
  • Filament propagation resulted in spatial cleaning and shortening of the driving beam.

Abstract

By matching a driving laser’s peak power to the self-focusing threshold in an extended gas cell, a nonlinear light filament is formed that naturally isolates attosecond pulses. As it propagates, the filament autonomously shortens and spatially cleans the driving beam, while simultaneously altering the local medium properties to synchronize the light fields. This dynamic effect restricts the coherent buildup of emitted radiation to a single half-cycle, eliminating the need for complex external optical gating.

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Cite This Study

O. Ghafur (2026) studied this question.

synapsesocial.com/papers/69e3203440886becb653f4f1https://doi.org/10.1038/s41467-026-71478-w
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