collaborators

11 papers

physics.optics2026

A Heterogeneous 200 mm Silicon Nitride Photonics Platform for Visible-to-Near-Infrared Applications via Micro-Transfer Printing

Konstantinos Akritidis, Gaudhaman Jeevanandam, Manuel Reza +11

The commercialization of next-generation technologies, including optical interconnects, quantum computing, AR/VR, and medical diagnostics, requires a low-loss photonic platform off…

physics.optics2026

Micro-Transfer Printing of Lithium Niobate on 200 mm Silicon Photonics: A High-Speed Heterogeneous Wafer-Scale Platform

Xiujun Zheng, Suzanne Bisschop, Arno Moerman +21

The rapid growth of artificial intelligence (AI) and other data center applications is driving the demand for photonic interconnects that combine high-speed with low energy consump…

physics.optics2026

A variability-aware simulation and design workflow for wafer-scale, heterogeneously integrated lithium niobate modulators

Patrick Nenezic, Ewoud Vissers, Arno Moerman +11

We present a variability-aware simulation framework for heterogeneously integrated lithium niobate traveling-wave modulators. The framework incorporates fabrication-variation data…

physics.optics2026

Thin-film lithium tantalate for ultraviolet integrated electro-optic modulator

Chupao Lin, Patrick Nenezic, Arno Moerman +8

The realization of integrated, high-speed ultraviolet (UV) modulation is pivotal for the advancement of quantum information processing, portable atomic clocks, and secure solar-bli…

physics.optics2026

Toward nanophotonic platforms for solid-state Th nuclear clocks

Sandro Kraemer, Karen Mamian, Toby Bi +18

While the Th nuclear isomer has recently been observed and laser-excited, converting optical nuclear manipulation into a chip-scale solid-state frequency standard remains a…

physics.optics2025

Integrated emitters with CMOS-compatible tuning for large scale quantum SiN photonic circuits

Jasper De Witte, Atefeh Shadmani, Zhe Liu +10

Next-generation scalable quantum photonic technologies operating at the single photon level rely on bringing together optimized quantum building blocks with minimal optical couplin…