Combined Nonlinear Effects in Two-Photon Absorption Chromophores at High Intensities (Preprint)

Abstract

Large two-photon and excited state absorption have been reported in donor-acceptor-substituted pi-conjugated molecules. We have performed detailed nonlinear absorption and photophysical measurements on a system of AFX chromophores and calculate the nonlinear transmission based on an effective three-level model. A numerical model that includes far wing linear absorption has been developed and compared with an analytical three-photon absorption model. The models are in accordance and yield excellent agreement with experimental nonlinear transmission date of 0.02-M AFX solutions up to laser intensities ~1GW/cm2. Concentration effects at this intensity become increasingly evident. We have extended our modeling efforts to include some new effects that may be anticipated in this regime, such as stimulated scattering are included. We report on our experimental observations of various materials and discuss results with respect to our extended theoretical models.

Open PDF

Document Details

Document Type
Technical Report
Publication Date
Aug 01, 2006
Accession Number
ADA475022

Entities

People

  • Augustine M. Urbas
  • Daniel G. Mclean
  • Joy E. Rogers
  • Mark C. Brant
  • Paul A. Fleitz
  • Richard L. Sutherland

Organizations

  • Air Force Research Laboratory

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Absorption
  • Agreements
  • Air Force
  • Air Force Research Laboratories
  • Chromophores
  • Detectors
  • Energy Transfer
  • Equations
  • Intensity
  • Materials
  • Measurement
  • Optical Materials
  • Optics
  • Quantum Yields
  • Scattering
  • Two Photon Absorption
  • Wave Mixing

Fields of Study

  • Physics

Readers

  • Chemistry (specifically Chemical Fluorescence)
  • Computational Modeling and Simulation
  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.

Technology Areas

  • Directed Energy
  • Directed Energy - Lasers