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Nature Photonics, ISSN 1749-4885, 11/2012, Volume 6, Issue 11, pp. 749 - 758
Two rich and vibrant fields of investigation-graphene physics and plasmonics-strongly overlap. Not only does graphene possess intrinsic plasmons that are... 
LAYER GRAPHENE | MONOLAYER GRAPHENE | ROOM-TEMPERATURE | PHYSICS, APPLIED | TRANSPORT-PROPERTIES | ENHANCEMENT | HIGH-QUALITY | DEVICES | INFRARED-SPECTROSCOPY | METAMATERIALS | OPTICS | FINE-STRUCTURE CONSTANT | Power consumption | Nanocomposites | Graphene | High speed | Voltage | Nanomaterials | Nanostructure | Plasmonics | Physics - Mesoscale and Nanoscale Physics
Journal Article
Nature Physics, ISSN 1745-2473, 05/2013, Volume 9, Issue 5, pp. 304 - 309
Strong-field phenomena in optical nanostructures have enabled the integration of nanophotonics, plasmonics and attosecond spectroscopy. For example, tremendous... 
HIGH-HARMONIC-GENERATION | NANOPARTICLES | EXCITATION | PHYSICS, MULTIDISCIPLINARY | ENHANCEMENT | ANTENNAS | CYCLE LASER FIELDS | IONIZATION | NANOANTENNAS | Plasma | Nanostructured materials | Ultraviolet radiation | Nanocomposites | Fluorescence | Nanomaterials | Nonlinearity | Nanostructure | Plasmonics | Extreme values | Optical data processing
Journal Article
Applied Surface Science, ISSN 0169-4332, 10/2019, Volume 490, pp. 165 - 171
Vertically aligned MoS2 nanosheets have attracted considerable attention due to their large specific surface area and extensively exposed edges, useful for... 
CVD | MoS2 nanosheet | Au plasmonic nanoparticle | Vertical MoS2 | Photodetector | MoS | nanosheet | Vertical MoS | PHYSICS, CONDENSED MATTER | MONOLAYER MOS2 | PHYSICS, APPLIED | FILM | BROAD-BAND PHOTORESPONSE | LAYER MOS2 | CHEMISTRY, PHYSICAL | TRANSITION | PHOTOTRANSISTORS | HIGH-DETECTIVITY | OPTICAL-ABSORPTION | ULTRAVIOLET | NANOROD ARRAYS | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
Advanced Functional Materials, ISSN 1616-301X, 12/2017, Volume 27, Issue 45, pp. 1704181 - n/a
Journal Article
Small, ISSN 1613-6810, 11/2013, Volume 9, Issue 22, pp. 3778 - 3783
Journal Article
Advanced Materials, ISSN 0935-9648, 10/2015, Volume 27, Issue 37, pp. 5610 - 5616
Journal Article
Nano Letters, ISSN 1530-6984, 12/2016, Volume 16, Issue 12, pp. 7842 - 7848
Journal Article
Nanoscale, ISSN 2040-3364, 11/2015, Volume 7, Issue 47, pp. 2171 - 2179
Spectral-based methods are often used for label-free biosensing. However, practical implementations with plasmonic nanostructures suffer from a broad line... 
Index Medicus | Ellipticity | Polarization | Spectral lines | Plasmons | Nanostructure | Plasmonics | Detection | Figure of merit
Journal Article
Journal of Luminescence, ISSN 0022-2313, 2010, Volume 130, Issue 9, pp. 1628 - 1634
Nitrogen-vacancy (NV) defect centers in diamond have recently emerged as promising candidates for a number of applications in the fields of quantum optics and... 
Diamond | Photonic crystal cavities | Microsphere resonators | Defect centers | Plasmonic nanoparticles | DESIGN | HIGH-Q MODES | QUALITY-FACTOR | CAVITY | NUCLEAR-SPIN QUBITS | NANOCAVITY | FLUORESCENCE | OPTICS | Crystal defects | Nanocomposites | Nanomaterials | Joining | Nanostructure | Photons | Plasmonics | Photonics
Journal Article
Advanced Optical Materials, ISSN 2195-1071, 04/2017, Volume 5, Issue 7, pp. 1600717 - n/a
Plasmonic titanium nitride nanostructures are obtained via nitridation of titanium dioxide. Results show that complex nano‐ and microscale designs of... 
metamaterials | plasmonics | transition metal nitrides | refractory materials | high temperature chemistry | ENERGY | MATERIALS SCIENCE, MULTIDISCIPLINARY | FABRICATION | GENERATION | METAL | OPTICS | REFRACTORY PLASMONICS | Titanium nitride | Titanium | Oxides | Spectra | Nanostructure | Materials selection | Plasmonics | Titanium dioxide | Refractories
Journal Article
Critical Reviews in Environmental Science and Technology, ISSN 1064-3389, 12/2019, Volume 49, Issue 24, pp. 2314 - 2358
Journal Article