ABSTRACT: Plasmonic structures can provide deep-subwa-velength electromagnetic fields that are useful for enhancing light−matter interactions. However, because these localized modes are also dissipative, structures that offer the best compromise between field confinement and loss have been sought. Metallic wedge waveguides were initially identified as an ideal candidate but have been largely abandoned because to date their experimental performance has been limited. We combine state-of-the-art metallic wedges with integrated reflectors and precisely placed colloidal quantum dots (down to the single-emitter level) and demonstrate quantum-plasmonic waveguides and resonators with performance approaching theoretical limits. By exploiting a nearl...
Quantum dot-plasmonwaveguide systems are of interest for the active control of plasmon propagation, ...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
Spontaneous emission (SE) of a Quantum emitter depends mainly on the transmission strength between t...
Plasmonic structures can provide deep-subwavelength electromagnetic fields that are useful for enhan...
The goal of confining light at the deep-subwavelength scale while retaining moderate attenuation has...
Colloidal quantum dots are robust, efficient, and tunable emitters now used in lighting, displays, a...
In this dissertation, I present experimental investigation of the optical properties of nanoscale sy...
Metallic nanoparticles can generate collective oscillation of conduction electrons when excited by i...
The optical characteristics of a metal-coated dielectric wedge structure are investigated at a wavel...
Plasmonics is a rapidly growing field of research that has been intensely investigated in the past f...
This thesis describes experiments with surface plasmons: light confined to metal-dielectric interfac...
We propose and demonstrate a nanocomposite localized surface plasmon resonator embedded into an arti...
Plasmonics is a recently emerged technology that enables the compression of electromagnetic waves in...
We study theoretically electromagnetic modes guided by metallic wedges at telecom wavelengths. These...
The complementary optical properties of surface plasmon excitations of metal nanostructures and long...
Quantum dot-plasmonwaveguide systems are of interest for the active control of plasmon propagation, ...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
Spontaneous emission (SE) of a Quantum emitter depends mainly on the transmission strength between t...
Plasmonic structures can provide deep-subwavelength electromagnetic fields that are useful for enhan...
The goal of confining light at the deep-subwavelength scale while retaining moderate attenuation has...
Colloidal quantum dots are robust, efficient, and tunable emitters now used in lighting, displays, a...
In this dissertation, I present experimental investigation of the optical properties of nanoscale sy...
Metallic nanoparticles can generate collective oscillation of conduction electrons when excited by i...
The optical characteristics of a metal-coated dielectric wedge structure are investigated at a wavel...
Plasmonics is a rapidly growing field of research that has been intensely investigated in the past f...
This thesis describes experiments with surface plasmons: light confined to metal-dielectric interfac...
We propose and demonstrate a nanocomposite localized surface plasmon resonator embedded into an arti...
Plasmonics is a recently emerged technology that enables the compression of electromagnetic waves in...
We study theoretically electromagnetic modes guided by metallic wedges at telecom wavelengths. These...
The complementary optical properties of surface plasmon excitations of metal nanostructures and long...
Quantum dot-plasmonwaveguide systems are of interest for the active control of plasmon propagation, ...
Hensen M, Heilpern T, Gray SK, Pfeiffer W. Strong Coupling and Entanglement of Quantum Emitters Embe...
Spontaneous emission (SE) of a Quantum emitter depends mainly on the transmission strength between t...