IXITON-193-SLM Q-switched solid-state laser
Description
Single longitudinal and transversal mode emission is achieved by injection-seeding with the narrow-linewidth radiation of a cw micro-chip laser. The lasers provide short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz. The spectral bandwidth of the seeded laser output is ∆ν < 80 MHz. These lasers are well suited for scientific applications due to a high pulse-to-pulse stability of s < 1%. The average output power is up to 10 W at 1064 nm, and 5 W at the frequency-doubled wavelength of 532 nm. The UV wavelengths 355nm, 266nm and 213nm have ultra-stable pulse traces and a high coherence length not presentable with conventional lasers.
IXITON-193-SLM Q-switched solid-state laser
Specifications |
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Avg. Power: | 0.01 W |
Wavelength: | 193.368 nm |
Repetition Rate: | 6-6kHz |
Spatial Mode (M^2): | 1.6 |
Pulse Duration: | 7 ns |
Pulse-to-Pulse Stability (RMS): | 2.5 % |
Cooling: | N/A |
Applications
For industrial applications as well as fundamental research Xiton Photonics develops specific solutions which match precisely customer requirements even at exotic wavelengths. Our clients are organizations with a world wide reputation like Max Planck and Fraunhofer Institutes.
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Frequently Asked Questions
The IXITON-193-SLM Q-switched solid-state laser is a single longitudinal and transversal mode emission laser that provides short output pulses with a duration of ∆ t <12 ns in a diffraction limited beam with M² < 1.2 at a repetition rate of 8 to 15 kHz.
The spectral bandwidth of the seeded laser output is ∆ν < 80 MHz.
The average output power is up to 10 W at 1064 nm, and 5 W at the frequency-doubled wavelength of 532 nm.
The IXITON-193-SLM Q-switched solid-state laser is well suited for scientific applications due to a high pulse-to-pulse stability of s < 1%. It is used for industrial applications as well as fundamental research.
The pulse duration of the IXITON-193-SLM Q-switched solid-state laser is <12 ns.