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20142023
most citedCoherent control of light interaction with graphene

99 citations · 139 across the 7 of their papers we have counts for

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physics.optics2016

Optical analogues of the Newton-Schrödinger equation and boson star evolution

Thomas Roger, Calum Maitland, Kali Wilson +4

Many gravitational phenomena that lie at the core of our understanding of the Universe have not yet been directly observed. An example in this sense is the boson star that has been…

physics.optics20168 cited

Super-resonant radiation stimulated by high-harmonics

Cristian Redondo Loures, Thomas Roger, Daniele Faccio +1

Solitons propagating in media with higher order dispersion will shed radiation known as dispersive wave or resonant radiation, with applications in frequency broadening, deep UV so…

physics.optics20151 cited

Experimental characterisation of nonlocal photon superfluids

David Vocke, Thomas Roger, Francesco Marino +4

Quantum gases of atoms and exciton-polaritons are nowadays a well established theoretical and experimental tool for fundamental studies of quantum many-body physics and suggest pro…

physics.optics201499 cited

Coherent control of light interaction with graphene

Shraddha M. Rao, Julius J. F. Heitz, Thomas Roger +2

We report the experimental observation of all-optical modulation of light in a graphene film. The graphene film is scanned across a standing wave formed by two counter-propagating…

physics.optics20145 cited

Dichroism for Orbital Angular Momentum using Stimulated Parametric Down Conversion

Joseph Lowney, Thomas Roger, Daniele Faccio +1

We theoretically analyze stimulated parametric down conversion as a means to produce dichroism based on the orbital angular momentum (OAM) of an incident signal field. The nonlinea…

physics.optics201410 cited

Extreme Events in Resonant Radiation from Three-dimensional Light Bullets

Thomas Roger, Donatas Majus, Gintaras Tamosauskas +5

We report measurements that show extreme events in the statistics of resonant radiation emitted from spatiotemporal light bullets. We trace the origin of these extreme events back…