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1703 results:
TOPTICA Multimodal imaging paves the way forward in life sciences   TOPTICA Multimodal imaging paves the way forward in life sciences TOPTICA Multimodal imaging paves the way forward in life sciences TOPTICA Multimodal imaging paves the way forward in life  
Multiphoton Microscopy   For two-photon polymerization, typically lasers at 780 nm with 100 .. 200 fs pulse width and 50 .. 500 mW average power are employed. Fiber lasers are an ideal choice because of their compactness,  
SHG Microscopy  
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Ultrafast FemtoFiber Lasers for SHG Microscopy In a SHG process the interaction of two photons with a nonlinear material creates a new photon having twice the energy and therefore half the  
TOPTICA 8-fs Pulses from a compact Er fiber system quantitative modeling and experimental implementation   TOPTICA 8-fs Pulses from a compact Er fiber system quantitative modeling and experimental implementation TOPTICA 8-fs Pulses from a compact Er fiber system quantitative modeling and experimental  
Pump-probe Spectroscopy   Fiber Lasers for Pump-probe Spectroscopy Time resolved spectroscopy Multi-beam configuration Coherent, synchronized beams Ultrashort pulses < 15 fs Wavelength coverage 488 nm - 2200 nm  
fs/ps Material Processing   Femtosecond/Picosecond Seeder for Material Processing High peak power of ultrashort laser pulses ablates material Direct vaporization with no molten edges Methods: Scribing, cutting or  
Two-Photon Polymerization   Lasers for Two-Photon Polymerization Microfabrication with two-photon polymerization High penetration depth Fast writing process Average power 50 mW .. 1.5 W (depending on processing speed)  
Time-Resolved Microscopy   Ultrafast Fiber Lasers for Time-Resolved Microscopy Confocal microscopy FLIM Multiphoton Microscopy SHG Microscopy THG Microscopy CARS Wide tunability 488 nm - 2200 nm Femtosecond  
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