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Light in correlated disordered media
The optics of correlated disordered media is a conceptually rich research topic emerging at
the interface between the physics of waves in complex media and nanophotonics. Inspired …
the interface between the physics of waves in complex media and nanophotonics. Inspired …
[HTML][HTML] Perturbative light–matter interactions; from first principles to inverse design
Our experience of the world around us is governed almost entirely by light–matter
interactions. At the most fundamental level, such interactions are described by quantum …
interactions. At the most fundamental level, such interactions are described by quantum …
Long-range dipole–dipole interactions in a plasmonic lattice
Spontaneous emission of quantum emitters can be enhanced by increasing the local density
of optical states, whereas engineering dipole–dipole interactions requires modifying the two …
of optical states, whereas engineering dipole–dipole interactions requires modifying the two …
Long-range super-Planckian heat transfer between nanoemitters in a resonant cavity
We study radiative heat transfer between two nanoemitters placed inside different types of
closed cavities by means of a fluctuational-electrodynamics approach. We highlight a very …
closed cavities by means of a fluctuational-electrodynamics approach. We highlight a very …
Can nanocavities significantly enhance resonance energy transfer in a single donor–acceptor pair?
Long-range resonance energy transfer (RET) and the control of energy transfer on the
nanoscale have received considerable attention both experimentally and theoretically …
nanoscale have received considerable attention both experimentally and theoretically …
Experimental evidence of Förster energy transfer enhancement in the near field through engineered metamaterial surface waves
Plasmonics has been demonstrated to provide fine tuning of the emission properties of
single quantum sources (brightness, polarization, directivity, spectrum, lifetime…). However …
single quantum sources (brightness, polarization, directivity, spectrum, lifetime…). However …
Tunability and Long-Range Enhancement of Resonance Energy Transfer Facilitated by Plasmonic Nanorods
Resonance energy transfer (RET) between molecules or quantum dots is an important
process in many energy-related applications. Different environmental structures have been …
process in many energy-related applications. Different environmental structures have been …
Exploring superradiance effects of molecular emitters coupled with cavity photons and plasmon polaritons: a perspective from macroscopic quantum electrodynamics
In this study, we present the superradiance effects of N identical molecular emitters inside
Fabry–Pérot (FP) cavity systems in the framework of macroscopic quantum electrodynamics …
Fabry–Pérot (FP) cavity systems in the framework of macroscopic quantum electrodynamics …
Microwave analogy of Förster resonance energy transfer and effect of finite antenna length
The near-field interaction between quantum emitters, governed by Förster resonance energy
transfer (FRET), plays a pivotal role in nanoscale energy transfer mechanisms. However …
transfer (FRET), plays a pivotal role in nanoscale energy transfer mechanisms. However …
Impact of figures of merit in photonic inverse design
The rates of optical processes, such as two-photon absorption and spontaneous photon
emission, are strongly dependent on the environment in which they take place, easily …
emission, are strongly dependent on the environment in which they take place, easily …