Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nanoparticles, gained much interest in the field of optoelectronics due to its ability to confine light down to nanoscale without a diffraction limit. As light-matter interaction in nanoscale is becoming more important due to the demand in scaling down the optoelectronic devices, my thesis describes the work on manipulation of such light-matter interaction enabled by LSPs. First, periodically patterned two-dimensional arrays of bowties were investigated to study the localized surface plasmon (LSP) resonances via reflection measurements and numerical simulations. Due to the grating created by arrays of bowties, a new, lattice-coupled LSP (lattice-...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
Localized surface plasmons (LSP) excited by optical fields have many potential applications resultin...
© 2021Transition metal dichalcogenide (TMD) monolayers, such as MoS2, possess a direct optical bandg...
Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nano...
Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nano...
Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nano...
Understanding how light-matter interactions can be enhanced is the central theme of much of solid s...
peer reviewedTwo-dimensional layered crystals, including graphene and transition metal dichalcogenid...
2-Dimensional materials are of great interest because of novel and intriguing properties that emerge...
Understanding and tailoring light-matter interactions is critical to many fields, offering valuable ...
Understanding and tailoring light-matter interactions is critical to many fields, offering valuable ...
Two-dimensional layered crystals, including graphene and transition metal dichalcogenides, represent...
Plasmonic coupling of metallic nanostructures with two-dimensional molybdenum disulfide (MoS2) atomi...
Conversion of infrared energy within plasmonic fields at two-dimensional, semiconductive transition ...
Cataloged from PDF version of article.In view of the progress on the confinement of light, we report...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
Localized surface plasmons (LSP) excited by optical fields have many potential applications resultin...
© 2021Transition metal dichalcogenide (TMD) monolayers, such as MoS2, possess a direct optical bandg...
Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nano...
Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nano...
Localized surface plasmons (LSPs), which are collective charge oscillation confined by metallic nano...
Understanding how light-matter interactions can be enhanced is the central theme of much of solid s...
peer reviewedTwo-dimensional layered crystals, including graphene and transition metal dichalcogenid...
2-Dimensional materials are of great interest because of novel and intriguing properties that emerge...
Understanding and tailoring light-matter interactions is critical to many fields, offering valuable ...
Understanding and tailoring light-matter interactions is critical to many fields, offering valuable ...
Two-dimensional layered crystals, including graphene and transition metal dichalcogenides, represent...
Plasmonic coupling of metallic nanostructures with two-dimensional molybdenum disulfide (MoS2) atomi...
Conversion of infrared energy within plasmonic fields at two-dimensional, semiconductive transition ...
Cataloged from PDF version of article.In view of the progress on the confinement of light, we report...
Nanophotonics has greatly benefited from the unique ability of surface plasmons to confine optical mo...
Localized surface plasmons (LSP) excited by optical fields have many potential applications resultin...
© 2021Transition metal dichalcogenide (TMD) monolayers, such as MoS2, possess a direct optical bandg...