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20172023
most citedChallenges in Plasmonic Catalysis

380 citations · 555 across the 21 of their papers we have counts for

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physics.optics2022

Tunable Nonlinearity and Efficient Harmonic Generation from a Strongly Coupled Light-Matter System

Davis M. Welakuh, Prineha Narang

Strong light-matter coupling within electromagnetic environments provides a promising path to modify and control chemical and physical processes. The origin of the enhancement of n…

physics.optics20222 cited

Nonlinear optical processes in centrosymmetric systems by strong-coupling-induced symmetry breaking

Davis M. Welakuh, Prineha Narang

Nonlinear optical processes associated with even-order nonlinear susceptibilities are critical for both classical and quantum technologies. Inversion symmetry, however, prevents no…

physics.optics2021380 cited

Challenges in Plasmonic Catalysis

Emiliano Cortés, Lucas V. Besteiro, Alessandro Alabastri +4

The use of nanoplasmonics to control light and heat close to the thermodynamic limit enables exciting opportunities in the field of plasmonic catalysis. The decay of plasmonic exci…

physics.optics20215 cited

Room temperature single-photon superfluorescence from a single epitaxial cuboid nano-heterostructure

John P. Philbin, Joseph Kelly, Lintao Peng +6

Single-photon superradiance can emerge when a collection of identical emitters are spatially separated by distances much less than the wavelength of the light they emit, and is cha…

physics.optics2019

Axion-Field-Enabled Nonreciprocal Thermal Radiation in Weyl Semimetals

Bo Zhao, Cheng Guo, Christina A. C. Garcia +2

Objects around us constantly emit and absorb thermal radiation. The emission and absorption processes are governed by two fundamental radiative properties: emissivity and absorptiv…

physics.optics2018

Ab initio calculation of phonon polaritons in silicon carbide and boron nitride

Nicholas Rivera, Jennifer Coulter, Thomas Christensen +1

The ability to use photonic quasiparticles to control electromagnetic energy far below the diffraction limit is a defining paradigm in nanophotonics. An important recent developmen…