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20122022
most cited1 Low power continuous-wave nonlinear optics in silica glass integrated waveguide structures

733 citations · 1.5k across the 11 of their papers we have counts for

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physics.optics2021733 cited

1 Low power continuous-wave nonlinear optics in silica glass integrated waveguide structures

M. Ferrera, L. Razzari, D. Duchesne +7

Photonic integrated circuits (PICs) are a key component [1] for future telecommunication networks, where demands for greater bandwidth, network flexibility, low energy consumption…

physics.optics202020 cited

Long-range Bloch Surface Waves in Photonic Crystal Ridges

Tommaso Perani, Marco Liscidini

We theoretically study light propagation in guided Bloch surface waves (BSWs) supported by photonic crystal ridges. We demonstrate that low propagation losses can be achieved just…

physics.optics2019

Stimulated Four-Wave Mixing in Linearly Uncoupled Resonators

K. Tan, M. Menotti, Z. Vernon +3

We experimentally demonstrate stimulated four-wave mixing in two linearly uncoupled integrated SiN micro-resonators. In our structure the resonance combs of each resonator…

physics.optics20171 cited

A Green function method to study thin diffraction gratings

Daniel A. Travo, Rodrigo A. Muniz, Marco Liscidini +1

The anomalous features in diffraction patterns first observed by Wood over a century ago have been the subject of many investigations, both experimental and theoretical. The sharp,…

physics.optics201746 cited

Electromagnetic Field Enhancement in Bloch Surface Waves

Daniele Aurelio, Marco Liscidini

We present a systematic comparison between guided modes supported by slab waveguides and Bloch Surface Waves (BSWs) propagating at the surface of truncated periodic multilayers. We…

physics.optics2017354 cited

Chip-based photon quantum state sources using nonlinear optics

Lucia Caspani, Chunle Xiong, Benjamin J. Eggleton +5

The ability to generate complex optical photon states involving entanglement between multiple optical modes is not only critical to advancing our understanding of quantum mechanics…