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to the development, development, operation and applications of fiber and free space optical systems, near-infrared lasers, semiconductor sensors and their associated electronics. - Design, develop, calibrate, and
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the average power of high-repetition-rate Ytterbium lasers (60 MHz, 60 W, 1 µJ/pulse, <300 fs), provide advanced modulation features (pulse on demand, burst mode) and push forward the wavelength tunability
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involves developing a mid-infrared-emitting fiber laser to effectively drive THz generation in small-gap semiconductors and organic materials. The second approach will focus on implementing the discrete
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of an existing similar instrument. The instrument consists of a frequency beat note synthesizer using frequency stabilized lasers, using fiber optic components dedicated to optical telecommunications, and an
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fingerprint in mid-infrared (mid-IR) spectral range, between 5 and 12 µm. To reach this spectral range, the solution of choice for the laser source is based on Quantum Cascade Lasers (QCL) which have reached