Nonlinear ultrafast optical response in organic molecular crystals

ORAL

Abstract

We analyze possible nonlinear excitonic effects in the organic molecule crystals by using a combined time-dependent DFT and many-body approach. In particular, we analyze possible effects of the time-dependent (retarded)interaction between different types of excitations, Frenkel excitons, charge transfer excitons and excimers, on the electric and the optical response of the system. We pay special attention to the case of constant electric field and ultrafast pulses, including that of four-wave mixing experiments. As a specific application we examine the optical excitations of pentacene nanocrystals and compare the results with available experimental data.[1] Our results demostrate that the nonlinear effects can play an important role in the optical response of these systems. [1] A. Kabakchiev, ``Scanning Tunneling Luminescence of Pentacene Nanocrystals'', PhD Thesis (EPFL, Lausanne, 2010).

Authors

  • Talat S. Rahman

    Physics Department and NSTC, University of Central Florida, Physics Department, University of Central Florida, Department of Physics and NSTC, University of Central Florida, Orlando, Fl 32816

  • Volodymyr Turkowski

    Physics Department and NSTC, University of Central Florida

  • Michael N. Leuenberger

    Physics Department and NSTC, University of Central Florida