Unlike conventional dielectric photonic structures, metal coated or plasmonic structures can confine light on a sub-wavelength scale. It has been shown that despite high internal losses, lasing is possible in plasmonic cavities, with dimensions well below the diffraction limit of light. Due to the small size and high current density, it is possible that future metallic nano-lasers will have switching speeds in the terahertz range. Until now, integration of these lasers with other optical components was difficult since they are fully enclosed by a metal layer of several hundreds of nanometers thick. This thesis discusses the possibility of incorporating distributed feedback in plasmonic waveguides to control the wavelength of operation, to c...
Metallic nano-cavities can be used to fabricate lasers of sub-wavelength dimensions. Currently, thes...
A periodic array of thin slits opened on a metallic surface can act as a one-dimensional photonic cr...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Unlike conventional dielectric photonic structures, metal coated or plasmonic structures can confine...
We investigate electrically pumped, distributed feedback (DFB) lasers, based on gap-plasmon mode met...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
In this paper we present our latest results on the design, fabrication and characterization of metal...
We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exploit wave...
Plasmonic lasers generate coherent surface-plasmon-polaritons (SPPs) and couldbe realized at subwave...
A plasmonic laser structure coupled to a dielectric waveguide is proposed and investigated by rigoro...
We demonstrate lasing in Metal-Insulator-Metal (MIM) waveguides filled with electrically pumped semi...
Abstract"Physics of Optoelectronic and Plasmonic Devices: Cavities, Waveguides, Modulators and Laser...
The periodic scattering of the surface plasmon modes employed in the waveguide of terahertz quantum ...
Plasmonic lasers are the plasmonic analog to conventional lasers. They coherently amplify surface pl...
Metallic nano-cavities can be used to fabricate lasers of sub-wavelength dimensions. Currently, thes...
A periodic array of thin slits opened on a metallic surface can act as a one-dimensional photonic cr...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Unlike conventional dielectric photonic structures, metal coated or plasmonic structures can confine...
We investigate electrically pumped, distributed feedback (DFB) lasers, based on gap-plasmon mode met...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
In this paper we present our latest results on the design, fabrication and characterization of metal...
We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exploit wave...
Plasmonic lasers generate coherent surface-plasmon-polaritons (SPPs) and couldbe realized at subwave...
A plasmonic laser structure coupled to a dielectric waveguide is proposed and investigated by rigoro...
We demonstrate lasing in Metal-Insulator-Metal (MIM) waveguides filled with electrically pumped semi...
Abstract"Physics of Optoelectronic and Plasmonic Devices: Cavities, Waveguides, Modulators and Laser...
The periodic scattering of the surface plasmon modes employed in the waveguide of terahertz quantum ...
Plasmonic lasers are the plasmonic analog to conventional lasers. They coherently amplify surface pl...
Metallic nano-cavities can be used to fabricate lasers of sub-wavelength dimensions. Currently, thes...
A periodic array of thin slits opened on a metallic surface can act as a one-dimensional photonic cr...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...