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We report on a novel 18-TW peak power light source delivering pulses with 80-mJ energy and 4.5-fs duration. The system is based on optical parametric synthesizer principle involving multi-color optical parametric chirped pulse amplification stages.
We present breakthrough pulse energy performance (up to 300 μJ) from monolithic fiber-optic femtosecond laser systems that are developed for industrial materials processing. Whereas previous chirped pulse amplification (CPA) systems have implemented fiber-optic gain elements within free-space oscillator-amplifier circuits [1-3], we present monolithic fiber-optic CPA systems — where the mode-locked...
We describe femtosecond fiber laser systems optimized for high value applications in precision industrial micro-machining. Unprecedented system performance and reliability enable unique manufacturing capabilities for touch screen displays and other difficult-to-machine parts.
We demonstrated the photon-number-resolving detection at 1.04 μm by coincidence frequency upconverison. The detection efficiency of 6.8% was obtained. The Poissionian distribution of the up-converted photons was observed directly.
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