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Related Experiment Video

Updated: Dec 9, 2025

Direct Imaging of Laser-driven Ultrafast Molecular Rotation
10:52

Direct Imaging of Laser-driven Ultrafast Molecular Rotation

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Injection-seeded single-longitudinal-mode Ti:Sapphire laser with no active stabilization.

I G Marienko, M Zhi, A I Khizhnyak

    Optics Express
    |September 10, 2020
    PubMed
    Summary

    We developed a novel injection-seeded nanosecond Titanium-Sapphire laser for stable single-mode operation without active feedback. This laser achieves 6-mJ pulses with high efficiency, offering a new design for tunable laser applications.

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    Area of Science:

    • Laser Physics
    • Quantum Optics
    • Materials Science

    Background:

    • Achieving stable single-longitudinal-mode operation in pulsed lasers is crucial for many applications.
    • Traditional methods often rely on complex feedback loops for cavity stabilization.
    • Titanium-Sapphire (Ti:Sapphire) lasers are versatile but can be challenging to operate in a single mode.

    Purpose of the Study:

    • To demonstrate a novel, passively stable, injection-seeded nanosecond Ti:Sapphire laser.
    • To achieve single-longitudinal-mode operation without active cavity stabilization.
    • To investigate the performance and underlying physics of this new laser design.

    Main Methods:

    • Utilized an injection-seeded nanosecond Ti:Sapphire laser architecture.
    • Employed a short cavity design with an intracavity dispersive prism for wavelength pre-selection.

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    Last Updated: Dec 9, 2025

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    Implementation of a Coherent Anti-Stokes Raman Scattering CARS System on a Ti:Sapphire and OPO Laser Based Standard Laser Scanning Microscope
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  • Performed numerical simulations incorporating extra cavity losses to model laser behavior.
  • Main Results:

    • Achieved stable single-longitudinal-mode operation without active feedback.
    • Generated 6-mJ transform-limited pulses at 807 nm.
    • Observed a high slope efficiency of 43% and validated simulation results with experimental data.

    Conclusions:

    • The novel cavity design with an intracavity prism enables stable, single-mode operation in injection-seeded Ti:Sapphire lasers.
    • Passive cavity stabilization simplifies the laser system and reduces complexity.
    • The study provides insights into laser mode formation dynamics and validates simulation accuracy.