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CW laser Matisse® 2
solid-statedyetunable

CW laser - Matisse® 2  - Newport / Spectra-Physics - solid-state / dye / tunable
CW laser - Matisse® 2  - Newport / Spectra-Physics - solid-state / dye / tunable
CW laser - Matisse® 2  - Newport / Spectra-Physics - solid-state / dye / tunable - image - 2
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Characteristics

Operational mode
CW
Technology
solid-state, dye
Spectrum
tunable
Applications
for spectroscopy
Other characteristics
sealed, high-performance, low-noise, power, single longitudinal mode, Ti:sapphire
Power

Max.: 7.2 W

Min.: 0.8 W

Wavelength

Max.: 1,038 nm

Min.: 550 nm

Description

Matisse® single frequency ultra-stable, narrow linewidth tunable ring lasers are ideal for Quantum and AMO (atomic, molecular and optical physics) applications. The Matisse 2 system has the industry’s highest output power, the narrowest external linewidth, the broadest tuning range, and the most flexible architecture. Coupled with the Millennia® eV™ 25 pump laser, It produces over 7.2 W of output power. With flexibility to be configured for either Ti:Sapphire or dye as the laser gain medium, Matisse 2 provides an unprecedented tuning of >470 nm and linewidths down to 30 kHz, with fully integrated PDH lock to X reference cell. Narrowest linewidth <30 kHz Widest mode-hop-free Piezo tuning of 50 GHz Dust-sealed housing and massive steel baseplate Features The Out of Plane cavity design is a stable and more reliable configuration delivering years of worry free operation. All CW ring lasers support uni-directional propagation of light within the laser cavity. Most ring lasers utilize a thin intracavity waveplate which is easily damaged, resulting in lower output power and performance. The Matisse lasers are configured with an Out of Plane cavity design eliminating the need for this thin waveplate. Narrowest Linewidth The Matisse is available with three levels of frequency stabilization: Passive stabilization with phase lock loop, active stabilization with reference cell, and active stabilization with Pound-Drever-Hall locking for ultranarrow linewidths to <30 KHz (100 ms integration time).

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