activity
20242026
collaborators

9 papers

physics.optics2026

Toward Micro-Endoscopy: Distal-Free, Configuration-Agnostic Focusing Through Multimode Fiber

Dvir Marsh, Lior Fridman, Stav Lotan +3

Multimode fibers (MMFs) can transmit multiple guided modes simultaneously, making them a promising platform for high-resolution biomedical imaging, endoscopy and high-bandwidth opt…

physics.optics2025

Negative Index Makes a Perfect Time-Domain Lens, Generating Slow Playback of Ultrafast Events

Oded Schiller, Yonatan Plotnik, Guy Bartal +1

We explore the effects of incorporating negative index materials into the physics of time-varying media and find that changing the refractive index from positive to negative create…

quant-ph2025

Sparsity-Driven Entanglement Detection in High-Dimensional Quantum States

Stav Lotan, Hugo Defienne, Ronen Talmon +1

The characterization of high-dimensional quantum entanglement is crucial for advanced quantum computing and quantum information algorithms. Traditional methods require extensive da…

physics.optics2025

Hyperentanglement in Nanophotonic Systems with Discrete Rotational Symmetry

Lior Fridman, Amit Kam, Amir Sivan +3

We propose a scheme to generate hyperentanglement between photons carrying angular momentum in nanophotonic systems with discrete rotational symmetry. Coupling free-space photons i…

quant-ph2025

Tracking the Evolution of Near-Field Photonic Qubits into High-Dimensional Qudits via State Tomography

Amit Kam, Shai Tsesses, Lior Fridman +10

Quantum nanophotonics offers essential tools and technologies for controlling quantum states, while maintaining a miniature form factor and high scalability. For example, nanophoto…

physics.optics2025

Nonlinear Nanophotonics for High-Dimensional Quantum States

Liat Nemirovsky-Levy, Amit Kam, Meir Lederman +4

Quantum nanophotonics merges the precision of nanoscale light manipulation with the capabilities of quantum technologies, offering a pathway for enhanced light-matter interaction a…