A three-axis SQUID-based absolute vector magnetometer

in: Review of Scientific Instruments (2015)
Schönau, Thomas; Zakosarenko, Vyacheslav; Schmelz, Matthias; Stolz, Ronny; Anders, Solveig; Linzen, Sven Peter; Meyer, Matthias; Meyer, Hans-Georg
We report on the development of a three-axis absolute vector magnetometer suited for mobile operation in the Earth’s magnetic field. It is based on low critical temperature dc superconducting quantum interference devices (LTS dc SQUIDs) with sub-micrometer sized cross-type Josephson junctions and exhibits a white noise level of about 10 fT/Hz1/2. The width of superconducting strip lines is restricted to less than 6 μm in order to avoid flux trapping during cool-down in magnetically unshielded environment. The long-term stability of the flux-to-voltage transfer coefficients of the SQUID electronics is investigated in detail and a method is presented to significantly increase their reproducibility. We further demonstrate the long-term operation of the setup in a magnetic field varying by about 200 μT amplitude without the need for recalibration.

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