activity
20152017
most citedRigorous modal analysis of plasmonic nanoresonators

268 citations · 281 across the 2 of their papers we have counts for

collaborators

6 papers

physics.optics2017★ 268 cited

Rigorous modal analysis of plasmonic nanoresonators

Wei Yan, Rémi Faggiani, Philippe Lalanne

The specificity of modal-expansion formalisms is their capabilities to model the physical properties in the natural resonance-state basis of the system in question, leading to a tr…

physics.optics2016★ 13 cited

Implementing structural slow light on short length scales: the photonic speed-bump

Remi Faggiani, Jianji Yang, Richard Hostein +1

One-dimensional (1D) infinite periodic systems exhibit vanishing group velocity and diverging density of states (DOS) near band edges. However, in practice, systems have finite siz…

physics.optics2015

Light emission in nanogaps: overcoming quenching

Jianji Yang, Rémi Faggiani, Philippe Lalanne

Very large spontaneous-emission-rate enhancements (~1000) are obtained for quantum emitters coupled with tiny plasmonic resonance, especially when emitters are placed in the mouth…

physics.optics2015

Quenching, plasmonic and radiative decays in nanogap emitting devices

Remi Faggiani, Jianji Yang, Philippe Lalanne

By placing a quantum emitter in the mouths of nanogaps consisting of two metal nanoparticles nearly into contact, significant increases in emission rate are obtained. This mechanis…

physics.optics2015

Interaction between atoms and slow light: a waveguide-design study

Xiaorun Zang, Jianji Yang, Rémi Faggiani +8

The emerging field of on-chip integration of nanophotonic devices and cold atoms offers extremely-strong and pure light-matter interaction schemes, which may have profound impact o…

physics.optics2015

Lower bound for the spatial extent of localized modes in photonic-crystal waveguides with small random imperfections

Rémi Faggiani, Alexandre Baron, Xiaorun Zang +8

Light localization due to random imperfections in periodic media is paramount in photonics research. The group index is known to be a key parameter for localization near photonic b…