collaborators

5 papers

physics.optics2026

Direct volumetric reconstruction for highly compressive x-ray fluorescence ghost tomography

A. Ben-Yehuda, A. Rack, S. Shwartz +1

X-ray fluorescence (XRF) enables element-specific, nondestructive imaging, but conventional raster scanning scales poorly with sample size, particularly for tomography, because mea…

cs.CV2026

Noise2Ghost: Self-supervised deep convolutional reconstruction for ghost imaging

Mathieu Manni, Dmitry Karpov, K. Joost Batenburg +2

We present a new self-supervised deep-learning-based Ghost Imaging (GI) reconstruction method, which provides unparalleled reconstruction quality for noisy acquisitions among unsup…

physics.optics2026

Phase-Sensitive Nonlinear X-Ray Response in a Charge-Density-Wave Quantum Material

S. Sofer, G. J. Man, A. Bombardi +1

We report a phase-sensitive nonlinear x-ray response in the charge-density-wave material 1T-TaS2, revealed through x-ray parametric down-conversion into the ultraviolet. Extending…

physics.med-ph2026

Human-organ-scale x-ray fluorescence ghost imaging for radioisotope-free diagnostics

E. Levinson, R. H. Shukrun, N. Vigano +1

A wide range of diagnostic information in medicine is currently obtained using radioactive tracers. While central to nuclear medicine, these methods are inherently constrained: rad…

physics.optics2024

X-ray Phase Measurements by Time-Energy Correlated Photon Pairs

Yishai Klein, Edward Strizhevsky, Haim Aknin +7

The invention of X-ray interferometers has led to advanced phase-sensing devices that are invaluable in various applications. These include the precise measurement of universal con…