activity
20242026
most citedNanophotonic magnetometry in a spin-dense diamond cavity

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

collaborators

5 papers

physics.optics2026

Saturable absorption in defect-rich diamond nanophotonics

Christopher Coutts, Nicholas J. Sorensen, Elham Zohari +3

Diamond is a leading quantum photonics platform due to its ability to host qubits based on crystal defects such as nitrogen-vacancy centres. Fabricating nanophotonic devices from d…

physics.optics20251 cited

Nanophotonic magnetometry in a spin-dense diamond cavity

Nicholas J. Sorensen, Elham Zohari, Joshua S. Wildeman +3

Quantum sensors based on the nitrogen-vacancy (NV) center in diamond are leading platforms for high-sensitivity magnetometry with nanometer-scale resolution. State-of-the-art imple…

physics.optics2025

Photorefractive tuning seeded by third-harmonic light in a diamond photonic crystal cavity

Joe Itoi, Elham Zohari, Nicholas J. Sorensen +6

Single-crystal diamond nanocavities have tremendous potential for use in quantum and nonlinear optical technologies. The ability to precisely control their resonant frequencies is…

quant-ph2025

A simple model for entangled photon generation in resonant structures

Nicholas J. Sorensen, Vitaliy Sultanov, Maria V. Chekhova

The ability to engineer pairs of entangled photons is essential to quantum information science, and generating these states using spontaneous parametric down-conversion (SPDC) in n…

physics.ins-det2024

Open-Source CubeSat Solar Panels: Design, Assembly, Testing, and On-Orbit Demonstration

Nicholas J. Sorensen, Erik F. Halliwell

Cube satellites, or CubeSats, are small satellites commonly used to perform Earth imaging and on-orbit scientific experiments. CubeSats are often powered using expensive, inflexibl…