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most citedHybrid Nanophotonic Scintillators for Enhanced X-ray Absorption, Emission, and Time Resolution

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physics.optics20261 cited

Hybrid Nanophotonic Scintillators for Enhanced X-ray Absorption, Emission, and Time Resolution

Seou Choi, Sachin Vaidya, Avner Shultzman +3

Scintillators convert ionizing radiation into visible photons, enabling applications from cosmic ray detection to medical imaging. Two independent strategies for improving scintill…

physics.optics2025

Attosecond-resolved quantum fluctuations of light and matter

Matan Even Tzur, Chen Mor, Noa Yaffe +10

Until recently, attosecond optical spectroscopy and quantum optics evolved along non-overlapping directions. In attosecond science, attosecond pulses have been regarded as classica…

physics.optics2025

Measuring and controlling the birth of quantum attosecond pulses

Matan Even Tzur, Chen Mor, Noa Yaffe +8

The generation and control of extreme ultraviolet (XUV) radiation by high harmonic generation (HHG) have advanced ultrafast science, providing direct insights into electron dynamic…

physics.optics2024

Superfluorescent scintillation from coupled perovskite quantum dots

Shaul Katznelson, Shai Levy, Alexey Gorlach +10

Scintillation, the process of converting high-energy radiation to detectable visible light, is pivotal in advanced technologies spanning from medical diagnostics to fundamental sci…

physics.optics2024

Towards a second generation of metascintillators using the Purcell effect

Avner Shultzman, Roman Schütz, Yaniv Kurman +12

This study focuses on advancing metascintillators to break the 100 ps barrier and approach the 10 ps target. We exploit nanophotonic features, specifically the Purcell effect, to s…