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CamOptics' spatial light modulator passed the 4GW/cm² peak power test with a 1030nm femtosecond laser.


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In high-peak-time ultrafast laser applications, the optical damage threshold and stability of the spatial light modulator (SLM) are key indicators of system reliability.

CamOptics' spatial light modulator successfully completed power verification testing under 1030nm, 670fs, 25kHz femtosecond laser irradiation, achieving a peak power of 4GW/cm².

CamOptics' spatial light modulator passed the 4GW/cm² peak power test on a 1030nm femtosecond laser.

Throughout the testing process, the device response remained stable, with no abnormal scattering or optical damage, and the light field modulation effect remained consistent.

The successful completion of this test, achieving a peak power of 4GW/cm² using a 1030nm, 670fs, 25kHz femtosecond laser, fully verifies the reliability and stability of CamOptics' spatial light modulator under ultra-high peak power femtosecond laser irradiation. Its high-precision light field manipulation capability, maintained even under extremely short pulses, is suitable for applications requiring extremely high uniformity and controllability, such as micro/nano fabrication, three-dimensional microstructure writing, and complex light field experiments. This opens up new possibilities for high-end microfabrication companies in improving processing accuracy and efficiency, and also provides research users with experimental conditions for higher power, ultrafast light pulses.

CamOptics will continue to focus on performance breakthroughs in spatial light modulators, constantly pushing the limits of product damage through continuous technological optimization, providing partners with more competitive light field manipulation solutions, and helping customers break through technological limitations in a wider range of scenarios to fully explore and unleash the infinite possibilities of light.

 

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