Dynamic responses of photonic crystal microcavities in nonlinear media are analyzed via both a finite-difference code and coupled-mode theory in the time domain. Optical frequency generation in both second- and third-order nonlinear materials is demonstrated based on the transient evolution of cavity modes. Terahertz waves can be generated in quadratically nonlinear crystals by optical rectification, whereas state generation inside the band gap can be linked to a Rabi-like splitting in cubic media. An all-optical ultra-fast wavelength shifter is proposed. © Springer-Verlag 2005
Following a review of the theory of terahertz generation via optical rectification in nonlinear crys...
We discuss a scheme for the parametric amplification of the quantum fluctuations of the electromagn...
The energy exchange between coupled microcavities is shown to counteract the switching process, givi...
Dynamic responses of photonic crystal microcavities in nonlinear media are analyzed via both a finit...
We investigate the generation of terahertz pulses via optical rectification of the transient respons...
Using a three-dimensional fully vectorial nonlinear time-domain analysis, we numerically investigate...
By coupled mode theory in the time domain and a finite-difference time-domain code, we investigate w...
Based on three-dimensional time domain numerical simulations of the nonlinear dispersive Maxwell equ...
Using three-dimensional time-domain numerical simulations of the nonlinear dispersive Maxwell equati...
We propose a scheme for efficient cavity-enhanced nonlinear THz generation via difference-frequency ...
we focus on a new scheme to generate THz radiation taking advantage of the high quality factor (Q) ...
We review our work in nonlinear optics in 3D photonic crystals encompassing both quadratic and cubic...
We present a microscopic theory for ultrafast control of solids with high-intensity terahertz freque...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
Nonlinear optical phenomena associated with high-order soliton breakup in photonic crystal fibres an...
Following a review of the theory of terahertz generation via optical rectification in nonlinear crys...
We discuss a scheme for the parametric amplification of the quantum fluctuations of the electromagn...
The energy exchange between coupled microcavities is shown to counteract the switching process, givi...
Dynamic responses of photonic crystal microcavities in nonlinear media are analyzed via both a finit...
We investigate the generation of terahertz pulses via optical rectification of the transient respons...
Using a three-dimensional fully vectorial nonlinear time-domain analysis, we numerically investigate...
By coupled mode theory in the time domain and a finite-difference time-domain code, we investigate w...
Based on three-dimensional time domain numerical simulations of the nonlinear dispersive Maxwell equ...
Using three-dimensional time-domain numerical simulations of the nonlinear dispersive Maxwell equati...
We propose a scheme for efficient cavity-enhanced nonlinear THz generation via difference-frequency ...
we focus on a new scheme to generate THz radiation taking advantage of the high quality factor (Q) ...
We review our work in nonlinear optics in 3D photonic crystals encompassing both quadratic and cubic...
We present a microscopic theory for ultrafast control of solids with high-intensity terahertz freque...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
Nonlinear optical phenomena associated with high-order soliton breakup in photonic crystal fibres an...
Following a review of the theory of terahertz generation via optical rectification in nonlinear crys...
We discuss a scheme for the parametric amplification of the quantum fluctuations of the electromagn...
The energy exchange between coupled microcavities is shown to counteract the switching process, givi...