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Related Experiment Video

Updated: Dec 14, 2025

Shaping the Amplitude and Phase of Laser Beams by Using a Phase-only Spatial Light Modulator
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Spatially resolved spectral phase interferometry with an isolated attosecond pulse.

Hiroki Mashiko, Ming-Chang Chen, Koji Asaga

    Optics Express
    |July 19, 2020
    PubMed
    Summary

    We demonstrate spatially resolved supercontinuum spectral phase interferometry with isolated attosecond pulses (IAP). This technique reveals high spatial, spectral, and temporal coherence, paving the way for future phase-based spectroscopy.

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    Area of Science:

    • Ultrafast science
    • Quantum optics
    • Attosecond physics

    Background:

    • Attosecond pulses enable probing ultrafast electronic dynamics.
    • Characterizing the coherence of attosecond pulses is crucial for advanced spectroscopy.
    • Supercontinuum generation offers broadband spectral access.

    Purpose of the Study:

    • To demonstrate spatially resolved supercontinuum spectral phase interferometry.
    • To assess the spatial, spectral, and temporal coherence of isolated attosecond pulses (IAP).
    • To establish a foundation for phase-based spectroscopy of spatiotemporal electronic dynamics.

    Main Methods:

    • Utilizing supercontinuum spectral phase interferometry.
    • Employing isolated attosecond pulses (IAP) as the light source.
    • Analyzing spatial-spectral and spectral-delay interferograms.

    Main Results:

    • Demonstrated spatially resolved interferometry with broadband IAP.
    • Measured high spatial and spectral coherence across the supercontinuum spectrum.
    • Observed periodic temporal oscillations indicating high temporal coherence.

    Conclusions:

    • Spatially resolved supercontinuum spectral phase interferometry is feasible with IAP.
    • The technique confirms high coherence of IAP in spatial, spectral, and temporal domains.
    • This method will advance the study of spatiotemporal electronic dynamics using phase-based spectroscopy.