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Letter

Detection of Small Magnetic Fields Using Serial Magnetic Tunnel Junctions with Various Geometrical Characteristics

1
Department of Applied Physics, Tohoku University, Sendai 980–8579, Japan
2
Spin Sensing Factory Corporation, Sendai 980–0845, Japan
3
Center for Science and Innovation in Spintronics (Core Research Cluster), Tohoku University, Sendai 980–8577, Japan
4
Center for Spintronics Research Network, Tohoku University, Sendai 980–8579, Japan
*
Author to whom correspondence should be addressed.
Sensors 2020, 20(19), 5704; https://doi.org/10.3390/s20195704
Submission received: 11 September 2020 / Revised: 1 October 2020 / Accepted: 2 October 2020 / Published: 7 October 2020
(This article belongs to the Section Intelligent Sensors)

Abstract

Thanks to their high magnetoresistance and integration capability, magnetic tunnel junction-based magnetoresistive sensors are widely utilized to detect weak, low-frequency magnetic fields in a variety of applications. The low detectivity of MTJs is necessary to obtain a high signal-to-noise ratio when detecting small variations in magnetic fields. We fabricated serial MTJ-based sensors with various junction area and free-layer electrode aspect ratios. Our investigation showed that their sensitivity and noise power are affected by the MTJ geometry due to the variation in the magnetic shape anisotropy. Their MR curves demonstrated a decrease in sensitivity with an increase in the aspect ratio of the free-layer electrode, and their noise properties showed that MTJs with larger junction areas exhibit lower noise spectral density in the low-frequency region. All of the sensors were able detect a small AC magnetic field (Hrms = 0.3 Oe at 23 Hz). Among the MTJ sensors we examined, the sensor with a square-free layer and large junction area exhibited a high signal-to-noise ratio (4792 ± 646). These results suggest that MTJ geometrical characteristics play a critical role in enhancing the detectivity of MTJ-based sensors.
Keywords: tunnel magnetoresistance; magnetic tunnel junction; magnetoresistance sensor; integrated magnetic sensor tunnel magnetoresistance; magnetic tunnel junction; magnetoresistance sensor; integrated magnetic sensor

Share and Cite

MDPI and ACS Style

Jin, Z.; Wang, Y.; Fujiwara, K.; Oogane, M.; Ando, Y. Detection of Small Magnetic Fields Using Serial Magnetic Tunnel Junctions with Various Geometrical Characteristics. Sensors 2020, 20, 5704. https://doi.org/10.3390/s20195704

AMA Style

Jin Z, Wang Y, Fujiwara K, Oogane M, Ando Y. Detection of Small Magnetic Fields Using Serial Magnetic Tunnel Junctions with Various Geometrical Characteristics. Sensors. 2020; 20(19):5704. https://doi.org/10.3390/s20195704

Chicago/Turabian Style

Jin, Zhenhu, Yupeng Wang, Kosuke Fujiwara, Mikihiko Oogane, and Yasuo Ando. 2020. "Detection of Small Magnetic Fields Using Serial Magnetic Tunnel Junctions with Various Geometrical Characteristics" Sensors 20, no. 19: 5704. https://doi.org/10.3390/s20195704

APA Style

Jin, Z., Wang, Y., Fujiwara, K., Oogane, M., & Ando, Y. (2020). Detection of Small Magnetic Fields Using Serial Magnetic Tunnel Junctions with Various Geometrical Characteristics. Sensors, 20(19), 5704. https://doi.org/10.3390/s20195704

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