activity
20062017
most citedA negative permeability material at red light

213 citations · 364 across the 5 of their papers we have counts for

collaborators

8 papers

cond-mat.mes-hall2017

Controlling the plasmonic properties of ultrathin TiN films at the atomic level

Deesha Shah, Alessandra Catellani, Harsha Reddy +4

By combining first principles theoretical calculations and experimental optical and structural characterization such as spectroscopic ellipsometry, X-ray spectroscopy, and electron…

physics.optics20172 cited

Ultrabright room-temperature single-photon emission from nanodiamond nitrogen-vacancy centers with sub-nanosecond excited-state lifetime

Simeon Bogdanov, Mikhail Y. Shalaginov, Alexei Lagutchev +7

Ultrafast emission rates obtained from quantum emitters coupled to plasmonic nanoantennas have recently opened fundamentally new possibilities in quantum information and sensing ap…

physics.optics2017148 cited

Optical time reversal from time-dependent Epsilon-Near-Zero media

Stefano Vezzoli, Vincenzo Bruno, Clayton DeVault +7

Materials with a spatially uniform but temporally varying optical response have applications ranging from magnetic field-free optical isolators to fundamental studies of quantum fi…

physics.optics2017

Surface-plasmon opto-magnetic field enhancement for all-optical magnetization switching

Aveek Dutta, Alexander V. Kildishev, Vladimir M. Shalaev +2

The demand for faster magnetization switching speeds and lower energy consumption has driven the field of spintronics in recent years. The magnetic tunnel junction is the most deve…

cond-mat.mtrl-sci2017

Temperature-dependent optical properties of plasmonic titanium nitride thin films

Harsha Reddy, Urcan Guler, Zhaxylyk Kudyshev +3

Due to their exceptional plasmonic properties, noble metals such as gold and silver have been the materials of choice for the demonstration of various plasmonic and nanophotonic ph…

physics.optics2016

Enhanced nonlinear refractive index in epsilon-near-zero materials

L. Caspani, R. P. M. Kaipurath, M. Clerici +9

New propagation regimes for light arise from the ability to tune the dielectric permittivity to extremely low values. Here we demonstrate a universal approach based on the low line…