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Updated: May 19, 2026

Single-Molecule Förster Resonance Energy Transfer Methods for Real-Time Investigation of the Holliday Junction Resolution by GEN1
Published on: September 18, 2019
Photolytic-interference-free, femtosecond two-photon fluorescence imaging of atomic hydrogen
Waruna D Kulatilaka1, James R Gord, Viswanath R Katta
1Spectral Energies, LLC, 5100 Springfield Street, Dayton, Ohio 45431, USA. waruna.kulatilaka@wpafb.af.mil
Abstract:
We discuss photolytic-interference-free, high-repetition-rate imaging of reaction intermediates in flames and plasmas using femtosecond (fs) multiphoton excitation. The high peak power of fs pulses enables efficient nonlinear excitation, while the low energy nearly eliminates interfering single-photon photodissociation processes. We demonstrate proof-of-principle, interference-free, two-photon laser-induced fluorescence line imaging of atomic hydrogen in hydrocarbon flames and discuss the method's implications for certain other atomic and molecular species.
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