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FEMTOPOWER™ 

New FEMTOPOWER™ ultrafast amplifiers are now available, including 5 mJ and 10 kHz models. Sub-7 fs pulses and full CEP stabilization are offered ...

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BIOS

24-29.01.2009
USA | San Jose | Booth #8240

BiOS is your source of information on the latest developments in biomedical optics. Hear groundbreaking results in optical coherence tomography, molecular imaging, spectroscopy and more ...

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Photonics West

27-30.01.2009
USA | San Jose | Booth #240

SPIE Photonics West is an essential part of your strategy for 2009—move beyond survival with ...

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Accessories MOSAIC™ PRO X

Applications

Microscopy
Dispersion management
Nonlinear microscopy
Ultrashort pulse delivery

 

Extraordinary Features

Extra compact footprint
Broad spectrum
Maximum passive stability
In-line input/output apertures
High throughput
Tunable GDD
Dispersive mirror technology
Solid mechanical design

 

 


 

Specifications
Clear aperture 2.5 mm
Total GDD up to - 10000 fs²
GDD tuning range - 5000 to - 10000 fs²
GDD tuning step < 700 fs²
Central wavelength ~ 800 nm
Bandwidth < 170 nm
Throughput > 65 %
Polarization (input) horizontal
MOSAIC™ PRO is a dispersion compensation module that maintains ultrafast pulses undistorted at the target, even when they propagate through complex optical systems such as microscopes. The MOSAIC™ module is based on dispersive mirror (DM) technology and thus extremely compact and easy to use. The inline design guarantees minimum beam displacement
upon module insertion. Integration into an existing setup is straightforward, with no additional optical elements being required.
When employing the MOSAIC™ module for dispersion
precompensation pulses shorter than 15 fs can be delivered at the focus of complex scanning laser microscopes.

Dispersion management module for ultrafast microscopy
Latest generations of Dispersive Mirrors (DM) exhibit significantly
higher dispersion, resulting in compact and efficient dispersion compensation modules. Only by employing DMs can dispersion properties be tailored for precise compensation
of complex optical setups (such as microscopes) without unwanted side effects such as the introduction of high order dispersion. This is a prerequisite for the undistorted
delivery of pulses having a duration of only a few tens of femtoseconds.
The MOSAICTM in-line design guarantees minimum beam displacement when inserting or exchanging the modules. It allows easy integration into an existing setup, without the need for additional optical elements.