By coupled mode theory in the time domain and a finite-difference time-domain code, we investigate wavelength shifting and frequency conversion via four-wave mixing inside a photonic crystal wire in an isotropic Kerr material. The three-dimensional time-resolved analysis yields ultrafast and all-optically tunable frequency conversion of a signal/channel about the pump frequency
Photonic crystals are consisting of a periodic dielectric medium that can affect the electromagnetic...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Using three-dimensional time-domain numerical simulations of the nonlinear dispersive Maxwell equati...
By coupled mode theory in the time domain and a finite-difference time-domain code, we investigate w...
Dynamic responses of photonic crystal microcavities in nonlinear media are analyzed via both a finit...
We investigate four wave mixing in photonic crystal wire microresonators realized in an isotropic me...
We investigate optical parametric oscillations via four-wave mixing in a dielectric photonic crystal...
Slab waveguides with a two-dimensional periodic distribution of the refractive index are proposed an...
We demonstrate both width and wavelength-tunable optical pulse train generation based on four-wave m...
Optical devices employing photonic crystals and novel nanostructure materials may exhibit useful pro...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
Optical and opto-electronic components play important roles in both classical and quantum informatio...
Using a three-dimensional fully vectorial nonlinear time-domain analysis, we numerically investigate...
Photonic crystals are consisting of a periodic dielectric medium that can affect the electromagnetic...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Using three-dimensional time-domain numerical simulations of the nonlinear dispersive Maxwell equati...
By coupled mode theory in the time domain and a finite-difference time-domain code, we investigate w...
Dynamic responses of photonic crystal microcavities in nonlinear media are analyzed via both a finit...
We investigate four wave mixing in photonic crystal wire microresonators realized in an isotropic me...
We investigate optical parametric oscillations via four-wave mixing in a dielectric photonic crystal...
Slab waveguides with a two-dimensional periodic distribution of the refractive index are proposed an...
We demonstrate both width and wavelength-tunable optical pulse train generation based on four-wave m...
Optical devices employing photonic crystals and novel nanostructure materials may exhibit useful pro...
In this thesis we study ultrafast all-optical switching of microcavities. We employ the electronic K...
Optical and opto-electronic components play important roles in both classical and quantum informatio...
Using a three-dimensional fully vectorial nonlinear time-domain analysis, we numerically investigate...
Photonic crystals are consisting of a periodic dielectric medium that can affect the electromagnetic...
The ultrafast changes of material properties induced by short laser pulses can lead to a frequency s...
Using three-dimensional time-domain numerical simulations of the nonlinear dispersive Maxwell equati...