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A diode laser pumped frequency converted laser system is offered for CW Tera Hertz Generation via Frequency Mixing. The Frequency Mixing Crystal is pumped via two superimposed tunable diode lasers. Depending on the power requirements of the frequency mixer crystal, a amplification stage is included for boosting the carrier wave with the beat signal via a modified Master Oscillator Power Amplifier (MOPA) configuration. The covered THz frequency regime ranges from DC to several THz. Special features are:
Excellent tuning behavior
- coarse and fine tuning modes of the master lasers
- fine tuning via piezo actuator with a resolution better than 10MHz
- manual coarse tuning up to 20THz
- large mode-hop free tuning range of up to 100GHz and more
Narrow linewidth
- linewidth 50dB
Flexible schemes of realization
- THz system based on tunable Littman / Metcalf master lasers with free beam optics
- THz system based on tunable DFB master lasers with free beam optics
- THz system based on fiber coupled tunable DFB master lasers
- THz system based on Butterfly packaged, fiber coupled tunable DFB master lasers
Plug & Play configuration
- automated wavelength tuning
- remote control via GPIB, RS232 and USB
Applications for the new laser generation include:
- Spectroscopy und optical process control
- Homeland Security
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Elforlight SPOT Lasers, previously only available at 1064nm and 532nm, now has a UV version at 355 nm. SPOT-UV produces pulses at <1.5ns (typically 1ns) at repetition rates from single shot up to 10kHz.
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The L series is a range of modest power scientific lasers featuring superb beam quality, with reduced linewidth options for spectroscopic applications.
I4 series are slm versions up to 700mW, suitable for injection seeding, sensing, amplification etc.
Available at 1064, 1340, 1319, 1047 and 1053nm
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Multiwave Photonics offers a state-of-the-art Pulsed Seed Laser as a high performance, compact and cost effective OEM module. The module is designed as a pulsed seed laser source for feeding Yb-doped fiber booster amplifiers or other appropriate optical amplifiers to produce high energy pulses with pulsewidth and repetition rate that are selectable over wide ranges, as appropriate for marking, micromachining, medical and other applications. The module also serves as an excellent source for fiber-optic sensing.
Key features and advantages
-Center wavelength in the range 1030 nm – 1080 nm
-Pulse peak power up to 0.75 W
-Operates as fast electrical–to–optical converter with 100 MHz bandwidth
-Pulsewidth and repetition rate can be selected over wide ranges
-Pulsewidth range: 10 ns – 250 ns
-Repetition rate range: Single–shot – 500 kHz
-Narrow spectral width option available (<0.5 nm)
-Internal bias and temperature control electronics
-Robust OEM enclosure with integrated heat sink
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The SIFIR-50 Laser System brings reliable, easy operation, stable output, and outstanding beam quality to the scientific and commercial THz application user. The SIFIR-50 package is rugged, and transportable.
The SIFIR-50 is an optically pumped THz laser consisting of a sealed-off pump laser, a frequency standard, and a THz laser cavity. The pump laser inside the SIFIR-50 features an efficient folded resonator approach contained within an all-metal housing. Metal seals insure both long operational and shelf lifetimes. This structural approach gives the SIFIR-50's pump laser its outstanding beam quality and stability.
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PicoQuant GmbH and TOPTICA Photonics AG have jointly developed a new high power picosecond diode laser head for the near infrared wavelength range. The system combines a pulsed seed-laser (PicoQuant's special heads of the LDH Series driven by the PDL 800-B / PDL 800-D / PDL 808 / PDL 828 diode laser drivers) and TOPTICA's tapered amplifier technology in a Master Oscillator Power Amplifier (MOPA) arrangement. The PicoTA produces light pulses shorter than 100 ps at an adjustable repetition rate between 1 MHz and 80 MHz, with amplification of the master laser peak power by more than a factor of 10. Systems are available at 730, 780, 980 and 1060 nm.
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