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1740 results:
iChrome FLE - iChrome MLE   iChrome MLE 4 (5) wavelength laser combiner High power up to 100mW Up to 20 MHz modulation Self aligning system View all products  
iChrome FLE - iChrome CLE-50   iChrome CLE-50 4 wavelength laser combiner (50 mW) Direct modulation, complete off Automatic alignment All diode technology View all products  
iChrome FLE - iChrome CLE   iChrome CLE 4 wavelength laser combiner (20 mW) Optimized for confocal microscopy Cost effective Automatic alignment View all products  
USA - Government Scientific Sales   TOPTICA is a global, equal opportunity employer that supports diversity in the workplace. We offer a competitive salary and a comprehensive total benefits package.View all products  
USA - Government Scientific Sales   This individual should have a hands-on background including diode and/or ultrafast lasers. Degree in physics, physical chemistry, optics, photonics or similar experience, MS or above preferred.  
Calibrated Output Power Measurements of cw-Terahertz Emitters   S. Nellen, T. Ishibashi, A. Deninger, R.B. Kohlhaas, L. Liebermeister, M. Schell, B. Globisch: Experimental comparison of UTC- and PIN-photodiodes for continuous-wave terahertz generation; J  
Calibrated Output Power Measurements of cw-Terahertz Emitters   Optoelectronic continuous-wave (cw) terahertz systems have been gaining increasing attention, both for applications in high-resolution spectroscopy, and for research towards high-speed wireless  
Calibrated Output Power Measurements of cw-Terahertz Emitters   Driven at the respective maximum limits – power levels of 40 mW for the PIN-PD and 50 mW for the UTC-PD, respectively –, the UTC-PD produced a higher output at frequencies beyond 150 GHz. The  
Terahertz Magneto-Spectroscopy   Terahertz time-domain spectroscopy offers unique possibilities for characterizing samples in high magnetic fields. Properties of interest include the conductivity, scattering time, sheet carrier  
Cooperations - POLYNICES   POLYNICES POLYmer based electro-optic PCB motherboard integration with Si3N4 Chiplets, InP Components and Electronic ICs enabling affordable photonic modules for THz Sensing and quantum computing  
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