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Simultaneous Multicolor Imaging of Biological Structures with Fluorescence Photoactivation Localization Microscopy
Published on: December 9, 2013
Three- and four-photon absorption of a multiphoton absorbing fluorescent probe
Florencio E Hernández1, Kevin D Belfield, Ion Cohanoschi
1Department of Chemistry and School of Optics/Center for Research and Education in Optics and Lasers/Florida Photonics Center of Excellence, University of Central Florida, Orlando, Florida 32816-2366, USA. florenzi@mail.ucf.edu
Abstract:
High-order multiphoton excitation processes are becoming a reality for fluorescence imaging and phototherapy treatment because they afford minimization of scattered light losses and a reduction of unwanted linear absorption in the living organism transparency window, making them less susceptible to photodamage, while improving the irradiation penetration depth and spatial resolution. We report the four-photon-excited fluorescence emission of (7-benzothiazol-2-yl-9,-didecylfluoren-2-yl)diphenylamine in hexane and its four-photon absorption cross section sigma4' = 8.1 x 10(-109) cm8 s3 photon(-3) for the transition S0 --> S1 when excited at 1600 nm with a tunable optical parametric generator (OPG) pumped by picosecond laser pulses. When pumped at 1200 nm, three-photon absorption was observed, corresponding to the same transition.
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