most citedThermally limited force microscopy on optically trapped single metallic nanoparticles

14 citations · 14 across the 1 of their papers we have counts for

collaborators

6 papers

physics.optics2019

A plasmonic painter's method of color mixing for a continuous RGB palette

Claudio U. Hail, Gabriel Schnoering, Mehdi Damak +2

The ability of mixing colors with remarkable results had long been exclusive to the talents of master painters. By finely combining colors at different amounts on the palette intui…

physics.optics2019

Subfemtonewton force fields measured with ergodic Brownian ensembles

Minghao Li, Oussama Sentissi, Stefano Azzini +3

We demonstrate that radiation pressure force fields can be measured and reconstructed with a resolution of fN (at a confidence level) using an ergodic ensemble of ov…

cond-mat.stat-mech2019

Optimal protocols and universal time-energy bound in Brownian thermodynamics

Yoseline Rosales-Cabara, Giovanni Manfredi, Gabriel Schnoering +3

We propose an optimization strategy to control the dynamics of a stochastic system transferred from one thermal equilibrium to another and apply it experimentally to a Brownian par…

physics.optics201914 cited

Thermally limited force microscopy on optically trapped single metallic nanoparticles

Gabriel Schnoering, Yoseline Rosales-Cabara, Hugo Wendehenne +2

We propose and evaluate a new type of optical force microscope based on a standing wave optical trap. Our microscope, calibrated in-situ and operating in a dynamic mode, is able to…

cond-mat.mtrl-sci2018

Microscopic nature of the asymmetric hysteresis in the insulator-metal transition of VO revealed by spectroscopic ellipsometry

Ievgen Voloshenko, Florian Kuhl, Bruno Gompf +4

Systematic spectroscopic ellipsometry investigations have been performed in order to elucidate the asymmetric insulator-to-metal transition in thin VO films. The comprehensive…

physics.optics2018

Three-dimensional enantiomeric recognition of optically trapped single chiral nanoparticles

Gabriel Schnoering, Lisa V. Poulikakos, Yoseline Rosales-Cabara +3

We optically trap freestanding single metallic chiral nanoparticles using a standing-wave optical tweezer. We also incorporate within the trap a polarimetric setup that allows to p…