Chiral emission, where the handedness of a transition dipole determines the direction in which a photon is emitted, has recently been observed from atoms and quantum dots coupled to nanophotonic waveguides. Here, we consider the case of chiral light–matter interactions in resonant nanophotonic structures, deriving closed-form expressions for the fundamental quantum electrodynamic quantities that describe these interactions. We show how parameters such as the position dependent, directional Purcell factors and mode volume can be calculated using computationally efficient two-dimensional eigenmode simulations. As an example, we calculate these quantities for a prototypical ring resonator with a geometric footprint of only 4.5 μm2, observing p...
Using a modal matching theory, we demonstrate the generation of short-range, chiral electromagnetic ...
ABSTRACT: Using a modal matching theory, we demonstrate the generation of short-range, chiral electr...
A first quantum-mechanical theory of chiral semiconductor nanoscrolls is presented. The theory allow...
Nanophotonic chiral sensing has recently attracted a lot of attention. The idea is to exploit the st...
Engineering photon emission and scattering is central to modern photonics applications ranging from ...
Spin-dependent, directional light–matter interactions form the basis of chiral quantum networks. In ...
This thesis describes the couplings and interactions of quantum dots embedded within nanoscale photo...
We study light-matter interactions in the bulk of a two-dimensional photonic lattice system, where p...
Scalable quantum technologies may be achieved by faithful conversion between matter qubits and photo...
Spin-dependent, directional light-matter interactions form the basis of chiral quantum networks. In ...
10 pags., 8 figs.Chiral quantum optics has become a burgeoning field due to its potential applicatio...
The interplay of light and matter at the nanoscale has spurred recent advancements across a broad sw...
We report strongly non-reciprocal behaviour for quantum dot exciton spins coupled to nano-photonic w...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
We present an overview of the framework of macroscopic quantum electrodynamics from a quantum nanoph...
Using a modal matching theory, we demonstrate the generation of short-range, chiral electromagnetic ...
ABSTRACT: Using a modal matching theory, we demonstrate the generation of short-range, chiral electr...
A first quantum-mechanical theory of chiral semiconductor nanoscrolls is presented. The theory allow...
Nanophotonic chiral sensing has recently attracted a lot of attention. The idea is to exploit the st...
Engineering photon emission and scattering is central to modern photonics applications ranging from ...
Spin-dependent, directional light–matter interactions form the basis of chiral quantum networks. In ...
This thesis describes the couplings and interactions of quantum dots embedded within nanoscale photo...
We study light-matter interactions in the bulk of a two-dimensional photonic lattice system, where p...
Scalable quantum technologies may be achieved by faithful conversion between matter qubits and photo...
Spin-dependent, directional light-matter interactions form the basis of chiral quantum networks. In ...
10 pags., 8 figs.Chiral quantum optics has become a burgeoning field due to its potential applicatio...
The interplay of light and matter at the nanoscale has spurred recent advancements across a broad sw...
We report strongly non-reciprocal behaviour for quantum dot exciton spins coupled to nano-photonic w...
Chiral matter is inherently handed in its structural arrangement. Its distinct interaction with chir...
We present an overview of the framework of macroscopic quantum electrodynamics from a quantum nanoph...
Using a modal matching theory, we demonstrate the generation of short-range, chiral electromagnetic ...
ABSTRACT: Using a modal matching theory, we demonstrate the generation of short-range, chiral electr...
A first quantum-mechanical theory of chiral semiconductor nanoscrolls is presented. The theory allow...