ODMR signatures from spin defect pairs are observed in cubic boron nitride, preserving all key properties identified in hexagonal boron nitride and enabling single-particle measurements.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Oxygen-plasma processing creates blinking-free near-infrared single-photon emitters in hBN with MHz brightness, 99.9% purity, 2.7 GHz cryogenic linewidths, and ~50% Debye-Waller factor.
Experimental demonstration of quantum sensing with a central spin ensemble in hBN, mapping hyperfine interactions, achieving 80 μs coherence under dynamical decoupling and sub-microtesla AC magnetic sensitivity at 10 nm distance.
citing papers explorer
-
Optical spin defect pairs in cubic boron nitride
ODMR signatures from spin defect pairs are observed in cubic boron nitride, preserving all key properties identified in hexagonal boron nitride and enabling single-particle measurements.
-
High-Performance Near-Infrared Quantum Emission from Color Centers in hBN
Oxygen-plasma processing creates blinking-free near-infrared single-photon emitters in hBN with MHz brightness, 99.9% purity, 2.7 GHz cryogenic linewidths, and ~50% Debye-Waller factor.
-
Quantum sensing with a spin ensemble in a two-dimensional material
Experimental demonstration of quantum sensing with a central spin ensemble in hBN, mapping hyperfine interactions, achieving 80 μs coherence under dynamical decoupling and sub-microtesla AC magnetic sensitivity at 10 nm distance.