This chapter reviews the fundamental optical properties and applications of photonic molecules (PMs) – photonic structures formed by electromagnetic coupling of two or more optical microcavities (photonic atoms). Controllable interaction between light and matter in photonic atoms can be further modified and enhanced by the manipulation of their mutual coupling. Mechanical and optical tunability of PMs not only adds new functionalities to microcavity-based optical components but also paves the way for their use as testbeds for the exploration of novel physical regimes in atomic physics and quantum optics. Theoretical studies carried on for over a decade yielded novel PM designs that make possible lowering thresholds of semiconductor microlas...
Photonic crystals are periodic dielectric structures with an index of refraction periodicity of the ...
Fundamentals and Applications of Nanophotonics includes a comprehensive discussion of the field of n...
First text fully covering the physics of microcavities. Reviews extremely rapid progress in this are...
Abstract This chapter reviews the fundamental optical properties and applications of photonic molecu...
A specific photonic structure, a photonic molecule (PM), formed by several ordered resonance microca...
The contributions in this volume were presented at a NATO Advanced Study Institute held in Erice, It...
Abstract Dielectric microspheres, with sizes on the order of several wavelengths, support high-quali...
We propose a photonic molecule consisting of multiple nanocavities in a photonic crystal and demonst...
This book gives a readable introduction to the important, rapidly developing, field of nanophotonics...
Interactions between light and molecular matter featuring photon absorption are commonly associated ...
A large body of work has accumulated over the years in the study of the optical properties of single...
This work takes inspiration from chemistry where the spectral characteristics of the molecules are d...
A photonic molecule (PM) is a miniature diffractive optical structure composed of resonance microcav...
Thesis (Ph.D.)--University of Washington, 2021Controllable light-matter interactions are of central ...
Resumen del trabajo presentado al 756. WE-Heraeus-Seminar, celebrado del 1 al 5 de noviembre de 2021...
Photonic crystals are periodic dielectric structures with an index of refraction periodicity of the ...
Fundamentals and Applications of Nanophotonics includes a comprehensive discussion of the field of n...
First text fully covering the physics of microcavities. Reviews extremely rapid progress in this are...
Abstract This chapter reviews the fundamental optical properties and applications of photonic molecu...
A specific photonic structure, a photonic molecule (PM), formed by several ordered resonance microca...
The contributions in this volume were presented at a NATO Advanced Study Institute held in Erice, It...
Abstract Dielectric microspheres, with sizes on the order of several wavelengths, support high-quali...
We propose a photonic molecule consisting of multiple nanocavities in a photonic crystal and demonst...
This book gives a readable introduction to the important, rapidly developing, field of nanophotonics...
Interactions between light and molecular matter featuring photon absorption are commonly associated ...
A large body of work has accumulated over the years in the study of the optical properties of single...
This work takes inspiration from chemistry where the spectral characteristics of the molecules are d...
A photonic molecule (PM) is a miniature diffractive optical structure composed of resonance microcav...
Thesis (Ph.D.)--University of Washington, 2021Controllable light-matter interactions are of central ...
Resumen del trabajo presentado al 756. WE-Heraeus-Seminar, celebrado del 1 al 5 de noviembre de 2021...
Photonic crystals are periodic dielectric structures with an index of refraction periodicity of the ...
Fundamentals and Applications of Nanophotonics includes a comprehensive discussion of the field of n...
First text fully covering the physics of microcavities. Reviews extremely rapid progress in this are...