Del Mar Photonics

New laser spectrometer OB' for research studies demanding fine resolution and high spectral density of radiation within UV-VIS-NIR spectral domains New laser spectrometer OB' for research  that demands high resolution and high spectral density in UV-VIS-NIR spectral domains
The OB' laser spectrometer includes a CW ultra-wide-tunable narrow-line laser, high-precision wavelength meter, an electronic control unit driven through USB interface as well as a software package. Novel advanced design of the fundamental laser component implements efficient intra-cavity frequency doubling as well as provides a state-of-the-art combined ultra-wide-tunable Ti:Sapphire & Dye laser capable of covering together a super-broad spectral range between 275 and 1100 nm. Wavelength selection components as well as the position of the non-linear crystal are precisely tuned by a closed-loop control system, which incorporates highly accurate wavelength meter. First customer who purchased OB' laser spectrometer is Mr. Christophe Couteau,  Photonic Entanglement Group (PEG) led by Professor Gregor Weihs, Institute for Quantum Computing (IQC). The IQC is a part of the University of Waterloo in Ontario, Canada.

Reserve a spot in our CW lasers training workshop in San Diego, California during this summer.

Read Complete Del Mar Photonics Spring 2008 newsletter

Del Mar Photonics one year ago: Newsletter from Spring 2007

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CW single-frequency ring Ti:Sapphire and dye lasers - Reserve a spot in our CW lasers training workshop during this summer in San Diego, California

Tekhnoscan introductory brochure
Flagship model of 15-kHz-linewidth CW Ti:Sapphire laser TIS-SF-777
CW single-frequency ring Ti:Sapphire laser model TIS-SF-07
Frequency-stabilized CW single-frequescy ring Dye laser DYE-SF-077
Resonant Frequency Doubler for CW single-frequency lasers, model FD-SF-07
Combined CW Ti:Sapphire/Dye laser with intracavity frequency doubling, model TIS/DYE-FD-08
Combined CW single-frequency laser system based on Ti:Sapphire and Dye laser TIS/DYE-SF-07