collaborators

7 papers

physics.optics2026

The vanishing distance: a practical range boundary for dynamic wavefront shaping

Hugo Lassiette, Léa Testé, Léa Krafft +6

Wavefront shaping (WFS) is a powerful modern method to control light propagation through scattering media, with applications ranging from biomedical imaging via cryptography to fre…

physics.optics2026

Nanosecond wavefront shaping to focus through agitated turbid media

Hugo Lassiette, Léa Krafft, Geoffrey Maulion +9

Multiple scattering rapidly scrambles optical fields in fog, snow and turbid water, causing op- timized wavefront corrections to become obsolete on microsecond timescales. Although…

physics.optics2026

A practical guide to Digital Micro-mirror Devices (DMDs) for wavefront shaping

Sébastien M. Popoff, Louis Malosse, Rodrigo Gutiérrez-Cuevas +5

Digital micromirror devices have gained popularity in wavefront shaping, offering a high frame rate alternative to liquid crystal spatial light modulators. They are relatively inex…

quant-ph2025

Two-Photon Bandwidth of Hyper-Entangled Photons in Complex Media

Ronen Shekel, Ohad Lib, Sébastien M. Popoff +1

When light propagates through complex media, its output spatial distribution is highly sensitive to its wavelength. This fundamentally limits the bandwidth of applications ranging…

quant-ph2025

Fundamental Bounds of Wavefront Shaping of Spatially Entangled Photons

Ronen Shekel, Sébastien M. Popoff, Yaron Bromberg

Wavefront shaping enables control of classical light through scattering media. Extending these techniques to spatially entangled photons promises new quantum applications, but thei…

quant-ph2025

Wavefront shaping enhanced nano-optomechanics down to the quantum precision limit

Alexandros G. Tavernarakis, Rodrigo Gutiérrez-Cuevas, Loïc Rondin +3

We introduce wavefront shaping as a tool for optimizing the sensitivity in nano-optomechanical measurement schemes. We perform multimode output analysis of an optomechanical system…