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20242026
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physics.optics2026

Monolithic Integration of Piezo-Optomechanical Photonics and CMOS Electronics

Matthew Zimmermann, Aileen Zhai, Andrew J. Leenheer +10

Next-generation photonic architectures for AI, sensing, and quantum computing require thousands to millions of reprogrammable photonic devices on a chip[1]. The monolithic integrat…

physics.optics2025

Full-volume aberration-space holography

Ian Christen, Christopher Panuski, Thomas Propson +1

Simultaneous, diffraction-limited control of multiple optical beams is crucial for applications ranging from lithography to optogenetics, deep tissue imaging, and tweezer-based man…

physics.optics2025

End-to-end physics-based modeling of laser-activated color centers in silicon

Qiushi Gu, Valeria Saggio, Camille Papon +5

Color centers are among the most promising candidates for quantum information processing. Central requirements for their practical applications include controlled and efficient loc…

physics.optics2024

Piezoelectrically actuated high-speed spatial light modulator for visible to near-infrared wavelengths

Tom Vanackere, Artur Hermans, Ian Christen +8

Advancements in light modulator technology have been driving discoveries and progress across various fields. The problem of large-scale coherent optical control of atomic quantum s…

physics.optics2024

Transfer printing micro-assembly of silicon photonic crystal cavity arrays: beating the fabrication tolerance limit

Sean P. Bommer, Christopher Panuski, Benoit Guilhabert +5

Photonic crystal cavities (PhCCs) can confine optical fields in ultra-small volumes, enabling efficient light-matter interactions for quantum and non-linear optics, sensing and all…