Halite 2
Fiber Laser System, 1030 nm, >2 W, <250 fs
Key Features:
- Truly-All-Fiber, SESAM-free oscillator
- Long lifetime and unprecedented stability
- Extreme shock and vibration resilience
- Single-box, compact, turn-key solution
- Air-cooled
There are many configurations and options available. If you do not see exactly what you need below, please contact us!
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Halite 2 |
Fiber Laser System, 1030 ± 5 nm, >2 W average Power, >100 nJ pulse energy, 20 ± 2.5 MHz rep rate, <250 fs FWHM pulse duration |
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Halite 2: One-box fiber laser system featuring an integrated robust, Truly-All-Fiber femtosecond oscillator.
The Halite 2 series is a compact, single-box, all-fiber femtosecond laser designed to meet the most demanding applications in neuroscience, biophotonics, microscopy, and engineering. With pulses as short as <250 fs (< 100 fs op.), average power over 2 W at 1030 nm, and the option of second harmonic at 515 nm, it is an irreplaceable tool in every lab that needs a reliable, turn-key, ultrafast light source. Thanks to its unique construction and SESAM-free technology, it is a cost-effective solution that provides high pulse energy (over 100 nJ), excellent beam quality, and easy integration.
Applications: Fluence Halite 2 can be used in application that need pure and stable laser pulses.
- 2-photon imaging & excitation
- Neuroscience
- Optogenetics
- Second harmonic generation (SHG)
- Two-photon polymerization (2PP)
Benefits:
- Compact Design: Designed for easy integration into both experimental and commercial systems.
- High Power Output: Over 2W of average power, beneficial for various applications including neuroscience, biophotonics, microscopy, and engineering.
- Ultrafast Performance: Improved resolution and sensitivity for applications like spectroscopy, sensing, and metrology. Cold ablation with minimal HAZ for material processing
- Flexible Wavelength Options: Operates at 1030 nm with an option for second harmonic at 515 nm, beneficial for various applications.
- Excellent Beam Quality: Provides high-quality beam properties, crucial for applications requiring accurate and consistent laser performance.