Applied Physics Letters · 2011 · 16 citations · 21 references
EngineeringLaser ScienceNonlinear OpticsMicroscopyConversion EfficiencyFour-wave Mixing MicroscopyBiomedical EngineeringSimultaneous Second-harmonic GenerationShort-pulse LasersOptical SolitonBroadband Nonlinear SignalsLight MicroscopyBiophysicsPhotonicsPulse GenerationPhysicsNon-linear OpticLaser MicroscopyBiophotonicsOptical ImagingThird-harmonic GenerationFlexible Chirp ControlBiomedical ImagingMultiphoton ProcessMedicine
We demonstrate a compact pulse compression scheme that offers flexible chirp control for improved conversion efficiencies in high resolution nonlinear optical microscopy. An Er:fiber laser combined with a highly nonlinear optical fiber yields pulses centered at 1100 nm with a bandwidth of 500 nm. The compressed pulses with a duration of 7.6 fs enable simultaneous second-harmonic generation, third-harmonic generation, and four-wave mixing microscopy. The spectrum is tailored for an ideal compromise between conversion efficiency and spectral discrimination between the three types of broadband nonlinear signals. Distinct differences in structural contrast obtained from the simultaneous read-out of the three nonlinear signals are demonstrated in a biological sample.
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Nonlinear scanning laser microscopy by third harmonic generation
Y. Barad, H. S. Eisenberg, Moshe Horowitz et al. · Applied Physics Letters · 1997 · 604 citations
Engineering, Microscopy, Wave Optic +24
Imaging lipid bodies in cells and tissues using third-harmonic generation microscopy
Delphine Débarre, Willy Supatto, Ana‐Maria Pena et al. · Nature Methods · 2005 · 567 citations
Optical Third Harmonic Generation in Gases by a Focused Laser Beam
John F. Ward, G.H.C. New · Physical Review · 1969 · 453 citations