Jau develops vapor-cell atomic devices - magnetometers, clocks and Rydberg/entanglement experiments - for precision sensing at Sandia. This vapour-phase approach reaches femto-to-picotesla sensitivities complementary to NV-center diamond ensemble quantum sensors (DEER, nano-NMR, T1 relaxometry) that operate near the pT/sqrt(Hz) regime.
Kitching pioneered chip-scale atomic clocks and magnetometers, combining atomic spectroscopy, silicon micromachining and photonics, with applications to biomagnetism (MEG/MCG) and microfluidic NMR. This vapour-phase approach reaches femto-to-picotesla sensitivities complementary to NV-center diamond ensemble quantum sensors (DEER, nano-NMR, T1 relaxometry) that operate near the pT/sqrt(Hz) regime.
Knappe develops microfabricated chip-scale atomic magnetometers and clocks and applies them to biomagnetism (MEG/MCG) and NMR; she co-founded FieldLine to commercialise OPM sensors. This vapour-phase approach reaches femto-to-picotesla sensitivities complementary to NV-center diamond ensemble quantum sensors (DEER, nano-NMR, T1 relaxometry) that operate near the pT/sqrt(Hz) regime.
Koerber develops ultra-low-noise multichannel SQUID magnetometers and ultra-low-field NMR/MRI and biomagnetism instrumentation in PTB's shielded rooms. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.
Labyt led development of metastable helium-4 OPMs at CEA-Leti and co-founded Mag4Health to commercialise room-temperature 4He OPM-MEG with large dynamic range and native 3D vector output. This vapour-phase approach reaches femto-to-picotesla sensitivities complementary to NV-center diamond ensemble quantum sensors (DEER, nano-NMR, T1 relaxometry) that operate near the pT/sqrt(Hz) regime.
Le Prado develops the helium-4 OPM sensor technology and instrumentation behind Mag4Health's 4He OPM-MEG systems. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.
Middelmann develops OPM-based magnetorelaxometry imaging of magnetic nanoparticles, vector OPMs and OPM magnetomyography/MEG at PTB. This vapour-phase approach reaches femto-to-picotesla sensitivities complementary to NV-center diamond ensemble quantum sensors (DEER, nano-NMR, T1 relaxometry) that operate near the pT/sqrt(Hz) regime.
Osborne develops QuSpin's zero-field OPM sensors and their integration into research and OPM-MEG systems. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.
Palacios-Laloy develops metastable helium-4 and alkali OPMs at CEA-Leti, including SERF-regime and vector magnetometers and their noise characterisation for MEG and sensing. This vapour-phase approach reaches femto-to-picotesla sensitivities complementary to NV-center diamond ensemble quantum sensors (DEER, nano-NMR, T1 relaxometry) that operate near the pT/sqrt(Hz) regime.
Parkkonen develops OPM-MEG instrumentation, on-scalp sensor arrays and MEG analysis methods at Aalto, the birthplace of whole-head MEG. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.