We propose an analytical time-domain model for microring and microdisk modulators, which considers both their electrical and optical properties. Theory of the dynamics of microring/microdisk is discussed, and general solutions to the transfer matrix representation are presented. Both static and dynamic predictions from the model are compared to measurement results to demonstrate the accuracy of our model. Static predictions and measurements are presented for power and phase responses, whereas dynamic predictions and measurements are presented for small-signal and large-signal operations. The model verifies that the chirping and modulation bandwidth of the modulators depend on the detuning state. Finally, the accuracy and scalability ...
In this thesis, we model and experimentally demonstrate a number of silicon microring resonator-base...
In this thesis, we study silicon-based polygonal microdisk resonators with laterally coupled wavegui...
The goal of this work is to enhance the performance of and demonstrate new applications for silicon ...
We propose an analytical time-domain model for microring and microdisk modulators, which considers b...
Silicon microring modulators are critical components in op-tical on-chip communications. In this pap...
Silicon photonic modulators have strong nonlinear behavior in phase modulation and frequency respons...
Silicon-based integrated photonics and optoelectronics have attracted recent substantial research an...
We report silicon electro-optic modulators based on p-i-n diodes integrated microdisk and microring ...
Restricted until 04 May 2013.This dissertation presents silicon-based integrated micro-resonators an...
This study presents a new simulation strategy for a high-speed microring-based PIN modulator using ...
Microring-based photonic fractional differentiators play an important role in the on-chip all-optica...
Optical micro-resonators with high quality factors and small mode volumes can find wide applications...
We present a comprehensive analytical modeling of a Silicon-on- Insulator (SOI) -based Parallel Casc...
We model the electro-optic bandwidth of lumped slow-light modulators. In agreement with experiments,...
Abstract—The paper presents a comprehensive physical layer design and modeling platform for silicon ...
In this thesis, we model and experimentally demonstrate a number of silicon microring resonator-base...
In this thesis, we study silicon-based polygonal microdisk resonators with laterally coupled wavegui...
The goal of this work is to enhance the performance of and demonstrate new applications for silicon ...
We propose an analytical time-domain model for microring and microdisk modulators, which considers b...
Silicon microring modulators are critical components in op-tical on-chip communications. In this pap...
Silicon photonic modulators have strong nonlinear behavior in phase modulation and frequency respons...
Silicon-based integrated photonics and optoelectronics have attracted recent substantial research an...
We report silicon electro-optic modulators based on p-i-n diodes integrated microdisk and microring ...
Restricted until 04 May 2013.This dissertation presents silicon-based integrated micro-resonators an...
This study presents a new simulation strategy for a high-speed microring-based PIN modulator using ...
Microring-based photonic fractional differentiators play an important role in the on-chip all-optica...
Optical micro-resonators with high quality factors and small mode volumes can find wide applications...
We present a comprehensive analytical modeling of a Silicon-on- Insulator (SOI) -based Parallel Casc...
We model the electro-optic bandwidth of lumped slow-light modulators. In agreement with experiments,...
Abstract—The paper presents a comprehensive physical layer design and modeling platform for silicon ...
In this thesis, we model and experimentally demonstrate a number of silicon microring resonator-base...
In this thesis, we study silicon-based polygonal microdisk resonators with laterally coupled wavegui...
The goal of this work is to enhance the performance of and demonstrate new applications for silicon ...