Presentation
28 September 2023 Recent progress in electrically and optically detected quantum solid state magnetometry for space applications
Hannes Kraus, Corey J. Cochrane, Andreas P. Gottscholl, Michael Flatté, David E. Fehr, Thomas Aichinger
Author Affiliations +
Abstract
We’re developing novel low-cost low-power rad-hard miniaturized solid-state magnetometers for planetary magnetic field sensing. This technology leverages spin-carrying quantum centers (QC) in wide-bandgap semiconductors such as diamond or silicon carbide. The U.S. Planetary Science Decadal Survey identifies increased need for remote-sensing capabilities such as Magnetometers. We show recent progress in developing our optically pumped solid state quantum magnetometer (OPuS-MAGNM) and electrically detected silicon carbide magnetometer (SiCMAG) instruments, aiming to tackle performance, mass and power requirements of planetary science magnetometry.
Conference Presentation
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Hannes Kraus, Corey J. Cochrane, Andreas P. Gottscholl, Michael Flatté, David E. Fehr, and Thomas Aichinger "Recent progress in electrically and optically detected quantum solid state magnetometry for space applications", Proc. SPIE PC12656, Spintronics XVI, PC126561T (28 September 2023); https://doi.org/10.1117/12.2678483
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KEYWORDS
Solid state electronics

Quantum magnetometry

Quantum detection

Miniaturization

Quantum optics

Quantum sensors

Quantum space

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