most citedMicro-Transfer Printed Continuous-Wave and Mode-Locked Laser Integration at 800 nm on a Silicon Nitride Platform

1 citations · 2 across the 3 of their papers we have counts for

collaborators

5 papers

physics.optics20251 cited

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…

physics.optics20251 cited

Micro-Transfer Printed Continuous-Wave and Mode-Locked Laser Integration at 800 nm on a Silicon Nitride Platform

Max Kiewiet, Stijn Cuyvers, Maximilien Billet +11

Applications such as augmented and virtual reality (AR/VR), optical atomic clocks, and quantum computing require photonic integration of (near-)visible laser sources to enable comm…

physics.optics2025

A high-speed heterogeneous lithium tantalate silicon photonics platform

Margot Niels, Tom Vanackere, Ewoud Vissers +22

The rapid expansion of cloud computing and artificial intelligence has driven the demand for faster optical components in data centres to unprecedented levels. A key advancement in…

physics.optics2025

A scalable quadratic nonlinear silicon photonics platform with printable entangled photon-pair sources

Tom Vandekerckhove, Jasper De Witte, Lisa De Jaeger +14

The integration of second-order optical nonlinearities into scalable photonic platforms remains a key challenge due to their large sensitivity to fabrication variations. Here, we p…

physics.optics2024

Centimetre-Scale Micro-Transfer Printing to enable Heterogeneous Integration of Thin Film Lithium Niobate with Silicon Photonics

Margot Niels, Tom Vanackere, Tom Vandekerckhove +5

The integrated photonics CMOS-compatible silicon nitride (SiN) platform is praised for its low propagation loss, but is limited by its lack of active functionalities such as a stro…