activity
20232026
collaborators

5 papers

physics.optics2026

Seeing the forbidden: overcoming optical selection rules through nanophotonic integration

Alex H. Rubin, Vytautas Žalandauskas, Pranta Saha +7

Optically addressable spin defects in silicon carbide, including the neutral divacancy (VV) and the negative nitrogen-vacancy (NV), are among leading building blocks of sol…

physics.optics2024

Triangular cross-section grating couplers for integrated quantum nanophotonic hardware in silicon carbide

Pranta Saha, Alex H. Rubin, Sridhar Majety +2

We design, fabricate, and characterize fishbone grating couplers for triangular cross-section photonics in silicon carbide compatible with color center integration. The periodic an…

physics.optics2024

Wafer-Scale Integration of Freestanding Photonic Devices with Color Centers in Silicon Carbide

Sridhar Majety, Victoria A. Norman, Pranta Saha +3

Color center platforms have been at the forefront of quantum nanophotonics for applications in quantum networking, computing, and sensing. However, large-scale deployment of this t…

quant-ph2024

Sub-2 Kelvin characterization of nitrogen-vacancy centers in silicon carbide nanopillars

Victoria A. Norman, Sridhar Majety, Alex H. Rubin +9

The development of efficient quantum communication technologies depends on the innovation in multiple layers of its implementation, a challenge we address from the fundamental prop…

physics.optics2023

Triangular Cross-Section Beam Splitters in Silicon Carbide for Quantum Information Processing

Sridhar Majety, Pranta Saha, Zbynka Kekula +2

Triangular cross-section color center photonics in silicon carbide is a leading candidate for scalable implementation of quantum hardware. Within this geometry, we model low-loss b…