activity
20042023
most citedMid-Infrared Plasmonic Biosensing with Graphene

1.4k citations · 1.5k across the 5 of their papers we have counts for

collaborators

9 papers

physics.optics2023

Plasmon-enhanced circular dichroism spectroscopy of chiral drug solutions

Matteo Venturi, Raju Adhikary, Ambaresh Sahoo +9

We investigate the potential of surface plasmon polaritons at noble metal interfaces for surface-enhanced chiroptical sensing of dilute chiral drug solutions. The high quality fact…

physics.optics2023★ 28 cited

Spectral tuning of high-harmonic generation with resonance-gradient metasurfaces

Piyush Jangid, Felix Ulrich Richter, Ming Lun Tseng +4

High-index dielectric subwavelength structures and metasurfaces are capable of enhancing light-matter interaction by orders of magnitude via geometry-dependent optical resonances.…

physics.optics2019

A nonreciprocal optical resonator with broken time-invariance for arbitrarily high time-bandwidth performance

Ivan Cardea, Davide Grassani, Simon J. Fabbri +6

Most present-day resonant systems, throughout physics and engineering, are characterized by a strict time-reversal symmetry between the rates of energy coupled in and out of the sy…

physics.optics2015★ 1.4k cited

Mid-Infrared Plasmonic Biosensing with Graphene

Daniel Rodrigo, Odeta Limaj, Davide Janner +4

Infrared spectroscopy is the technique of choice for chemical identification of biomolecules through their vibrational fingerprints. However, infrared light interacts poorly with n…

quant-ph2007★ 16 cited

Terahertz Room-Temperature Photonic Crystal Nanocavity Laser

Dirk Englund, Hatice Altug, Ilya Fushman +1

We describe an efficient surface-passivated photonic crystal nanocavity laser, demonstrating room-temperature operation with 3-ps total pulse duration (detector response limited) a…

quant-ph2007★ 45 cited

Low-Threshold Surface-Passivated Photonic Crystal Nanocavity Laser

Dirk Englund, Hatice Altug, Jelena Vuckovic

The efficiency and operating range of a photonic crystal laser is improved by passivating the InGaAs quantum well (QW) gain medium and GaAs membrane using an (NH4)S treatment. The…