arXiv · 2606.24576
Color-Center-Compatible Freestanding Diamond Directional Couplers for Quantum Photonics
Abstract
Freestanding all-diamond color-center photonics is a promising platform for optical integration of spin-based quantum defects. Within this geometry, we realize a key building block for quantum-network interconnects: a directional coupler that acts as an on-chip beam splitter. We design and simulate directional couplers with triangular cross sections using eigenmode and finite-difference time-domain simulations and target near-50:50 splitting at visible wavelengths. We fabricate the devices directly from bulk single-crystal diamond by angled oxygen reactive-ion-beam etching followed by a dry post-release hard-mask removal process. Room-temperature measurements at $λ_0\approx 637 \mathrm{nm}$ yield a mean coupling ratio of $C^\mathrm{meas}=46(16) \%$. Finally, we integrate SnV$^{-}$ centers into the nanophotonic structures and observe near-lifetime-limited optical linewidths and coherent optical Rabi oscillations without post-fabrication annealing, identifying the platform as a viable route towards integrated diamond quantum photonics.
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Colin Sauerzapf, Tom Jäger, Jonathan Enßlin, Oliver von Berg, Vladislav Bushmakin, Roman Kolesov, Rainer Stöhr, Vadim Vorobyov, Jörg Wrachtrup. 2026-06-24. Color-Center-Compatible Freestanding Diamond Directional Couplers for Quantum Photonics. https://doi.org/10.1021/acsphotonics.6c01594
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