Low-noise magnetometer based on inductance modulation in high-critical-temperature superconductor coil

We developed a magnetometer based on inductance modulation of a coil made from a high-critical-temperature superconducting material. The coil inductance was modulated over time via a modulation current applied to a magnetic wire that was inserted into the coil. The magnetic field was then converted...

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Veröffentlicht in:Japanese Journal of Applied Physics 2018-06, Vol.57 (6), p.60314
Hauptverfasser: Enpuku, Keiji, Matsuo, Masaaki, Yoshida, Yujiro, Yamashita, Shigeya, Sasayama, Teruyoshi, Yoshida, Takashi
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Sprache:eng
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Zusammenfassung:We developed a magnetometer based on inductance modulation of a coil made from a high-critical-temperature superconducting material. The coil inductance was modulated over time via a modulation current applied to a magnetic wire that was inserted into the coil. The magnetic field was then converted into a signal voltage using this time-dependent inductance. The relationship between magnetometer performance and the modulation current conditions was studied. Under appropriate conditions, the magnetometer had responsivity of 885 V/T. The magnetic field noise was 1.3 pT/Hz1/2 in the white noise region and 5.6 pT/Hz1/2 at f = 1 Hz.
ISSN:0021-4922
1347-4065
DOI:10.7567/JJAP.57.060314