Efficient near-field to far-field transformations for quasinormal modes of optical cavities and plasmonic resonators
arXiv:1912.08309 · doi:10.1103/PhysRevB.101.205402
Abstract
We describe an efficient near-field to far-field transformation for optical quasinormal modes, which are the dissipative modes of open cavities and plasmonic resonators with complex eigenfrequencies. As an application of the theory, we show how one can compute the reservoir modes (or regularized quasinormal modes) outside the resonator, which are essential to use in both classical and quantum optics. We subsequently demonstrate how to efficiently compute the quantum optical parameters necessary in the theory of quantized quasinormal modes [Franke et al., Phys. Rev. Lett. 122, 213901 (2019)]. To confirm the accuracy of our technique, we directly compare with a Dyson equation approach currently used in the literature (in regimes where this is possible), and demonstrate several order of magnitude improvement for the calculation run times. We also introduce an efficient pole approximation for computing the quantized quasinormal mode parameters, since they require an integration over a range of frequencies. Using this approach, we show how to compute regularized quasinormal modes and quantum optical parameters for a full 3D metal dimer in under one minute on a standard desktop computer. Our technique is exemplified by studying the quasinormal modes of metal dimers and a hybrid structure consisting of a gold dimer on top of a photonic crystal beam. In the latter example, we show how to compute the quantum optical parameters that describe a pronounced Fano resonance, using structural geometries that cannot practically be solved using a Dyson equation approach. All calculations for the spontaneous emission rates are confirmed with full-dipole calculations in Maxwell's equations and are shown to be in excellent agreement.
References in corpus (1)
Cited by in corpus (19)
- Quasinormal modes and Purcell factors of coupled loss-gain resonators and index-modulated ring resonators near exceptional points
- Quantized quasinormal mode description of non-linear cavity QED effects from coupled resonators with a Fano-like resonance
- Combining density functional theory with macroscopic QED for quantum light-matter interactions in 2D materials
- Quasinormal mode expansion of optical far-field quantities
- Certifying multi-mode light-matter interaction in lossy resonators
- Quantized quasinormal mode theory of coupled lossy and amplifying resonators
- Fluctuation-dissipation theorem and fundamental photon commutation relations in lossy nanostructures using quasinormal modes
- Gauge-invariant theory of truncated quantum light-matter interactions in arbitrary media
- Strong coupling regime and hybrid quasinormal modes of a single plasmonic resonator coupled to a TMDC monolayer
- Connecting classical and quantum mode theories for coupled lossy cavity resonators using quasinormal modes
- Classical Purcell factors and spontaneous emission decay rates in a linear gain medium
- Impact of mode regularization for quasinormal mode perturbation theories
- What is the spectral density of the reservoir for a lossy quantized cavity?
- Quantization of optical quasinormal modes for spatially separated cavity systems with finite retardation
- Gain-compensated metal cavity modes and a million-fold improvement of Purcell factors
- Resonance expansion of quadratic quantities with regularized quasinormal modes
- Green's function expansion for multiple coupled optical resonators with finite retardation using quasinormal modes
- Gain-modified emission dynamics between two quantum emitters in a plasmonic gain cavity system
- Position-Resolved Resonance Quantization for Lossy Cavities