activity
20182021
collaborators

8 papers

quant-ph2021

Protecting qubit coherence by spectrally engineered driving of the spin environment

Maxime Joos, Dolev Bluvstein, Yuanqi Lyu +2

Modern quantum technologies rely crucially on techniques to mitigate quantum decoherence; these techniques can be either passive, achieved for example via materials engineering, or…

quant-ph2020

Hybrid device for quantum nanophotonics

S. Pierini, M. D'Amato, M. Joos +5

Photons have been identified early on as a very good candidate for quantum technologies applications, as carriers of quantum information, either by polarization encoding, time enco…

physics.optics2020

Nanofiber based displacement sensor

Chengjie Ding, Maxime Joos, Constanze Bach +5

We report on the realization of a displacement sensor based on an optical nanofiber. A single gold nano-sphere is deposited on top of a nanofiber and the system is placed within a…

quant-ph2019

Nanophotonic approaches for integrated quantum photonics

Stefano Pierini, Mackrine Nahra, Maxime Joos +10

Photons for quantum technologies have been identified early on as a very good candidate for carrying quantum information encoded onto them, either by polarization encoding, time en…

physics.optics2019

Optical nanofiber interferometer and resonator

Chengjie Ding, Vivien Loo, Simon Pigeon +6

We report the fabrication and characterization of photonic structures using tapered optical nanofibers. Thanks to the extension of the evanescent electromagnetic field outside of t…

physics.optics2019

Full control of polarization in tapered optical nanofibers

Maxime Joos, Alberto Bramati, Quentin Glorieux

We report on a protocol to achieve full control of the polarization in a nanofiber. The protocol relies on studying the light scattered out from a nanofiber by means of two optical…