We investigate a tapered, hybrid plasmonic waveguide which has previously been proposed as an optically efficient near-field transducer (NFT), or component thereof, in several devices which aim to exploit nanofocused light. We numerically analyze how light is transported through the waveguide and ultimately focused via effective-mode coupling and taper optimization. Crucial dimensional parameters in this optimization process are identified that are not only necessary to achieve maximum optical throughput, but also optimum thermal performance with specific application towards heat-assisted magnetic recording (HAMR). It is shown that existing devices constructed on similar waveguides may benefit from a heat spreader to avoid deformation of th...
By providing a connection between the freely propagating radiation and the localized energy, optical...
Metal nanoantennas supporting localized surface plasmon resonances have become an indispensable tool...
Hyperbolic metamaterials (HMM) are of great interest due to their ability to break the diffraction l...
We investigate a tapered, hybrid plasmonic waveguide which has previously been proposed as an optica...
We investigate a tapered, hybrid plasmonic waveguide which has previously been proposed as an optica...
To achieve a feasible heat-assisted magnetic recording (HAMR) system, a near-field transducer (NFT) ...
We proposed a new elliptical near-field transducer (NFT) and V-shaped waveguide design, which provid...
We investigate the energy conversion process and subsequent thermal and bit-writing performance of a...
In this dissertation, we address the burgeoning fields of diffractive optics, metals-optics and plas...
Heat-assisted magnetic recording (HAMR) allows for data writing in hard disks beyond 1 Tb/in2 areal ...
Plasmonic devices, made of apertures or antennas, have played significant roles in advancing the fie...
Heat-assisted magnetic recording (HAMR) is a future roadmap technology to overcome the superparamagn...
In the age of Big Data, the demand for higher capacity hard disk drives (HDDs) is ever increasing. T...
We investigate heatsinking methods and material properties of various Au alloys to be used within th...
Modern electronic devices and circuits for information processing are rapidly approaching their ulti...
By providing a connection between the freely propagating radiation and the localized energy, optical...
Metal nanoantennas supporting localized surface plasmon resonances have become an indispensable tool...
Hyperbolic metamaterials (HMM) are of great interest due to their ability to break the diffraction l...
We investigate a tapered, hybrid plasmonic waveguide which has previously been proposed as an optica...
We investigate a tapered, hybrid plasmonic waveguide which has previously been proposed as an optica...
To achieve a feasible heat-assisted magnetic recording (HAMR) system, a near-field transducer (NFT) ...
We proposed a new elliptical near-field transducer (NFT) and V-shaped waveguide design, which provid...
We investigate the energy conversion process and subsequent thermal and bit-writing performance of a...
In this dissertation, we address the burgeoning fields of diffractive optics, metals-optics and plas...
Heat-assisted magnetic recording (HAMR) allows for data writing in hard disks beyond 1 Tb/in2 areal ...
Plasmonic devices, made of apertures or antennas, have played significant roles in advancing the fie...
Heat-assisted magnetic recording (HAMR) is a future roadmap technology to overcome the superparamagn...
In the age of Big Data, the demand for higher capacity hard disk drives (HDDs) is ever increasing. T...
We investigate heatsinking methods and material properties of various Au alloys to be used within th...
Modern electronic devices and circuits for information processing are rapidly approaching their ulti...
By providing a connection between the freely propagating radiation and the localized energy, optical...
Metal nanoantennas supporting localized surface plasmon resonances have become an indispensable tool...
Hyperbolic metamaterials (HMM) are of great interest due to their ability to break the diffraction l...