The slow light effect in a photonic crystal waveguide is investigated theoretically and experimentally. Theoretical calculation indicates that there is a slow light region for the even mode, from which the resonance and lasing in a microcavity would benefit. A photonic crystal waveguide microlaser is fabricated, which is related to the group velocity of c/120.6
This book discusses design, modeling, and the characterization of slow-light photonic crystal wavegu...
Slow light photonic crystal waveguides tightly compress propagating light and increase interaction t...
Coupling of external light signals into a photonic crystal waveguide becomes increasingly inefficien...
The guide mode whose frequency locates in the band edge in photonic crystal single line defect waveg...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
We recently proposed two-dimensional coupled photonic crystal microcavity arrays as a route to achie...
We present the design, theory and experimental implementation of a low modal volume microlaser based...
A slotted single-mode photonic crystal waveguide with a linear tapered slot is presented to realize ...
A convenient approach for slowing down light in integrated optical circuits is by utilizing a set of...
We present the research on the transmission characteristic of slow-light-mode in the photonic crysta...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...
We designed a two-dimensional coupled photonic crystal resonator array with hexagonal lattice. The c...
The paradigm of slow light in photonic crystal waveguides has already led to startling advances in n...
This book discusses design, modeling, and the characterization of slow-light photonic crystal wavegu...
Slow light photonic crystal waveguides tightly compress propagating light and increase interaction t...
Coupling of external light signals into a photonic crystal waveguide becomes increasingly inefficien...
The guide mode whose frequency locates in the band edge in photonic crystal single line defect waveg...
The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well ...
Slow light with a markedly low group velocity is a promising solution for optical buffering and adva...
Slow light with a remarkably low group velocity is a promising solution for buffering and time-domai...
We recently proposed two-dimensional coupled photonic crystal microcavity arrays as a route to achie...
We present the design, theory and experimental implementation of a low modal volume microlaser based...
A slotted single-mode photonic crystal waveguide with a linear tapered slot is presented to realize ...
A convenient approach for slowing down light in integrated optical circuits is by utilizing a set of...
We present the research on the transmission characteristic of slow-light-mode in the photonic crysta...
The phenomenon of slow light is discussed, with a focus on slow light structures based on photonic c...
We designed a two-dimensional coupled photonic crystal resonator array with hexagonal lattice. The c...
The paradigm of slow light in photonic crystal waveguides has already led to startling advances in n...
This book discusses design, modeling, and the characterization of slow-light photonic crystal wavegu...
Slow light photonic crystal waveguides tightly compress propagating light and increase interaction t...
Coupling of external light signals into a photonic crystal waveguide becomes increasingly inefficien...