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20242026
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physics.optics2026

Wavefront Engineering for Scintillation-Based Imaging

Joshua Chen, Sachin Vaidya, Simo Pajovic +7

Recent research in nanophotonics for scintillation-based imaging has demonstrated promising improvements in scintillator performance. In parallel, advances in nanophotonics have en…

physics.optics2025

Symbolic Learning of Topological Bands in Photonic Crystals

Ali Ghorashi, Sachin Vaidya, Ziming Liu +4

Topological photonic crystals (PhCs) that support disorder-resistant modes, protected degeneracies, and robust transport have recently been explored for applications in waveguiding…

physics.optics2025

Tunable Nanophotonic Devices and Cavities based on a Two-Dimensional Magnet

Ahmet Kemal Demir, Luca Nessi, Sachin Vaidya +3

Central to the field of nanophotonics is the ability to engineer the flow of light through nanoscale structures. These structures often have permanent working spectral ranges and o…

physics.optics2025

Nanophotonic thermal management in X-ray tubes

Simo Pajovic, Charles Roques-Carmes, Seou Choi +5

In X-ray tubes, more than 99% of the kilowatts of power supplied to generate X-rays via bremsstrahlung are lost in the form of heat generation in the anode. Therefore, thermal mana…

physics.optics2024

Nonreciprocal scintillation using one-dimensional magneto-optical photonic crystals

Olivia Y. Long, Simo Pajovic, Charles Roques-Carmes +5

Scintillation describes the conversion of high-energy particles into light in transparent media and finds diverse applications such as high-energy particle detection and industrial…