collaborators

7 papers

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

Rapid and efficient wavefront correction for spatially entangled photons using symmetrized optimization

Kiran Bajar, Ronen Shekel, Vikas S. Bhat +3

Spatial entanglement is a key resource in quantum technologies, enabling applications in quantum communication, imaging, and computation. However, propagation through complex media…

physics.optics2025

Building and aligning a 10-plane light converter

Ohad Lib, Ronen Shekel, Yaron Bromberg

The ability to manipulate the spatial structure of light is fundamental for a range of applications, from classical communication to quantum information processing. Multi-plane lig…

quant-ph2024

Experimental certification of high-dimensional entanglement with randomized measurements

Ohad Lib, Shuheng Liu, Ronen Shekel +4

High-dimensional entangled states offer higher information capacity and stronger resilience to noise compared with two-dimensional systems. However, the large number of modes and s…

physics.optics2024

Tutorial: How to build and control an all-fiber wavefront modulator using mechanical perturbations

Ronen Shekel, Kfir Sulimany, Shachar Resisi +4

Multimode optical fibers support the dense, low-loss transmission of many spatial modes, making them attractive for technologies such as communications and imaging. However, inform…