研究目的
To build a custom low-cost yet high-performance femtosecond (fs) fiber laser for multiphoton microscopy and fs surgery.
研究成果
The custom fs fiber laser generates pulses with sufficient peak power and uniformity to generate 2PE fluorescence and SHG, making it ideal for research laboratories aiming to develop compact and portable fs laser technologies for clinical multiphoton microscopy and fs surgery.
研究不足
The custom laser fabrication and operation is generally not suitable for laboratories unfamiliar with laser operation and safety. The system contains several free-space components that require alignment, limiting its mobility. The system is best used in an air-conditioned room with minimal air flow near it to maintain stable output.
1. Splice single mode fibers (SMF) using commercially available parts and standard fiber splicing techniques. 2. Assemble the fiber parts including pump laser, pump signal combiner, Yb-doped active fiber, and collimators. 3. Mount the fiber parts to the optical table and apply index matching gel to splice points. 4. Assemble the free-space parts including polarizing beam splitter (PBS), isolator, birefringent filter (BF), half wave plate (HWP), and quarter wave plates (QWP). 5. Set up extra-cavity components for pulse characterization and imaging performance tests. 6. Attain mode-locked performance with characterization of the laser pulse output using an oscilloscope (OSC), optical spectrum analyzer (OSA), and autocorrelator.
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