Narrow band lasers with high power

  • semiconductor inspection
  • lithography
  • Raman spectroscopy
  • confocal microscopy
  • bioengineering
  • Mastering of holographic gratings

Contact person: Wolf Wagner (Ph.D.)

 

Narrowband lasers with high power – precision and stability for demanding applications

High-performance narrowband lasers for research and industry

The narrowband laser with high power from Soliton GmbH offer an exceptional combination of spectral purity, performance stability and compact design. With a linewidth of less than 0.5 MHz and a coherence length of over 100 m, these lasers are ideal for many applications. Depending on the model and wavelength, they deliver power between 200 mW and 1000 mW, making them suitable for a wide range of scientific and industrial applications.

Technological features of narrowband high-power lasers

The narrowband laser with high power are characterized by the following technical properties:

Thanks to their single-frequency output, these narrowband high-power laser Extremely stable, with intensity noise remaining extremely low at less than 0.1 % RMS in the frequency range from 10 Hz to 10 MHz. The compact and robust design, combined with intuitive software control, makes these systems particularly user-friendly and suitable for continuous operation. They also feature a software-adjustable adjustment mode with reduced power. There is also the option of integrating external attenuators, which further increases operational reliability.

A special feature of these laser systems is the wide range of available wavelengths—including 320 nm, 349 nm, 532 nm, 640 nm, 698.4 nm, 780.24 nm, and 813.42 nm. This diversity allows for targeted applications in Raman spectroscopy, semiconductor inspection, lithography, and confocal microscopy. Furthermore, the lasers are ideal for mastering holographic gratings and for the targeted excitation of atomic transitions in rubidium (Rb) and strontium (Sr), as required in quantum technology.

Last but not least, the narrowband lasers with high power This is also true for bioengineering. Stable light sources are essential for fluorescence applications and imaging techniques. The optionally available QT versions also offer an optimized configuration for cold atom applications. Overall, these laser systems combine performance, stability, and versatility at the highest level.

The combination of high power, spectral purity and stability makes these lasers a reliable light source for precise scientific experiments and industrial processes.

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