← back to search

Gregory A. Wurtz

University of North Florida · US
Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Plasmonic and Surface Plasmon Research, Photonic Crystals and Applications, Gold and Silver Nanoparticles Synthesis and Applications, and Metamaterials and Metasurfaces Applications.
h-index
44
citations
9,148
works
149
NIH funding
primary concept
email

Recent publications

Brain metastases-derived extracellular vesicles induce binding and aggregation of low-density lipoprotein.
2020cited by 68position: contributordoi
Glycan Node Analysis of Plasma-Derived Extracellular Vesicles.
2020cited by 32position: contributordoi
Designer photonic dynamics by using non-uniform electron temperature distribution for on-demand all-optical switching times
Nature Communications 2019cited by 50position: middledoi
Designer photonic dynamics by using non-uniform electron temperature distribution for on-demand all-optical switching times.
2019cited by 15position: contributordoi
Generalization of the optical theorem: experimental proof for radially polarized beams
Light Science & Applications 2018cited by 34position: middledoi
Ultrafast synthesis and switching of light polarization in nonlinear anisotropic metamaterials
Nature Photonics 2017cited by 365position: middledoi
Lattice modes and plasmonic linewidth engineering in gold and aluminum nanoparticle arrays
Journal of the Optical Society of America B 2017cited by 200position: middledoi
Spontaneous Emission inside a Hyperbolic Metamaterial Waveguide
ACS Photonics 2017cited by 54position: middledoi
Nonlocality-driven supercontinuum white light generation in plasmonic nanostructures
Nature Communications 2016cited by 79position: middledoi
Ultrafast Optical Modulation of Second- and Third-Harmonic Generation from Cut-Disk-Based Metasurfaces
ACS Photonics 2016cited by 79position: middledoi
Integrated plasmonic circuitry on a vertical-cavity surface-emitting semiconductor laser platform
Nature Communications 2016cited by 33position: middledoi
Eliminating material constraints for nonlinearity with plasmonic metamaterials
Nature Communications 2015cited by 142position: middledoi
Bulk plasmon‐polaritons in hyperbolic nanorod metamaterial waveguides
Laser & Photonics Review 2015cited by 124position: middledoi
Refractive index sensing with hyperbolic metamaterials: strategies for biosensing and nonlinearity enhancement
Optics Express 2015cited by 97position: middledoi
Purcell effect in hyperbolic metamaterial resonators
Physical Review B 2015cited by 77position: middledoi
Hyperbolic metamaterial antenna for second-harmonic generation tomography
Optics Express 2015cited by 60position: middledoi
Tuning the effective plasma frequency of nanorod metamaterials from visible to telecom wavelengths
Applied Physics Letters 2015cited by 42position: middledoi
Hyperbolic Polaritonic Crystals Based on Nanostructured Nanorod Metamaterials
Advanced Materials 2015cited by 38position: middledoi
Superluminal and stopped light due to mode coupling in confined hyperbolic metamaterial waveguides
Scientific Reports 2015cited by 35position: middledoi
Spin–orbit coupling in surface plasmon scattering by nanostructures
Nature Communications 2014cited by 338position: middledoi
Photonic spin Hall effect in hyperbolic metamaterials for polarization-controlled routing of subwavelength modes
Nature Communications 2014cited by 304position: middledoi
Hydrogen Detected by the Naked Eye: Optical Hydrogen Gas Sensors Based on Core/Shell Plasmonic Nanorod Metamaterials
Advanced Materials 2014cited by 122position: middledoi
Nonperturbative Hydrodynamic Model for Multiple Harmonics Generation in Metallic Nanostructures
ACS Photonics 2014cited by 94position: middledoi
Ultrafast all-optical modulation with hyperbolic metamaterial integrated in Si photonic circuitry
Optics Express 2014cited by 83position: middledoi
Near-Field Interference for the Unidirectional Excitation of Electromagnetic Guided Modes
Science 2013cited by 711position: middledoi
Manipulating polarization of light with ultrathin epsilon-near-zero metamaterials
Optics Express 2013cited by 126position: middledoi
Plasmonic enhancement of nonlinear magneto-optical response in nickel nanorod metamaterials
Physical Review B 2013cited by 55position: middledoi
Fabrication and optical properties of large-scale arrays of gold nanocavities based on rod-in-a-tube coaxials
Applied Physics Letters 2013cited by 41position: middledoi
Low-Temperature Plasmonics of Metallic Nanostructures
Nano Letters 2012cited by 122position: middledoi
Broadband and broadangle SPP antennas based on plasmonic crystals with linear chirp
Scientific Reports 2012cited by 52position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Anatoly V. Zayats · King's College London21 papers (2012–2019)Wayne Dickson · King's College London11 papers (2012–2017)Pavel Ginzburg · Tel Aviv University11 papers (2013–2018)Alexey V. Krasavin · King's College London7 papers (2014–2018)Mazhar E. Nasir · London Centre for Nanotechnology6 papers (2014–2019)A. V. Zayats · London Centre for Nanotechnology6 papers (2012–2016)Francisco J. Rodríguez‐Fortuño · King's College London6 papers (2013–2019)Daniel O’Connor · Newark Public Library5 papers (2012–2016)Nicolas Olivier · Université Clermont Auvergne5 papers (2015–2018) · 5 papers (2013–2017)Pavel A. Belov · ITMO University4 papers (2013–2015) · 4 papers (2013–2017)William P. Wardley · University of Exeter3 papers (2014–2017)Andres D. Neira · King's College London3 papers (2014–2015)Paulina Segovia · Centro de Investigación Científica y de Educación Superior de Ensenada3 papers (2015–2018)Jean‐Sebastien G. Bouillard · University of Hull3 papers (2012–2016)Giuseppe Marino · Centre National de la Recherche Scientifique2 papers (2013–2015)Stefan A. Maier · Technical University of Munich2 papers (2013–2017)Nikos Vasilantonakis · King's College London2 papers (2015–2015)Yuri S. Kivshar · Australian National University2 papers (2013–2014)