磁场
噪音(视频)
磁通门罗盘
极限(数学)
磁强计
磁噪声
物理
探测理论
检出限
地球磁场
磁选
信噪比(成像)
声学
电子工程
磁珠
噪声地板
磁芯
核磁共振
背景噪声
生物磁学
降噪
磁通量
噪声测量
材料科学
芯(光纤)
领域(数学)
磁性纳米粒子
磁路
电磁铁
噪声频谱
计算机科学
磁铁
作者
Xiaofeng Pu,Zhijun Sheng,Zhoulu Yu,Huaidong Li,Xintao Wei,Tao Yang,Qingfang Liu,Guozhi Chai,Xiaolei Liang,Daqiang Gao
标识
DOI:10.1007/s40820-026-02317-2
摘要
Abstract Noninvasive detection of ultra-weak biomagnetic signals is crucial for modern biosensing, but conventional magnetic sensors are fundamentally limited by intrinsic noise. Orthogonal fluxgates (OFGs) enable high signal-to-noise-ratio detection of weak magnetic fields, yet their performance is still constrained by intrinsic 1/f noise and Barkhausen-related magnetic fluctuations. This study reports a low-noise orthogonal fluxgate in which a newly designed magnetic core and circuit mitigate existing noise limitations. The CoP/Ag composite core, featuring an amorphous-nanocrystalline dual phase, is associated with reduced low-frequency magnetic loss and improved noise performance. When integrated with a closed-loop feedback, the sensor achieves a noise floor of 8 pT/√Hz at 1 Hz. The sensor enables reliable detection of ultralow-concentration magnetic-bead signals. Alpha-fetoprotein (AFP) was used as a model biomarker in an immunomagnetic bead assay, yielding a linear response from 50 fg mL −1 to 100 ng mL −1 and a detection limit of 50 fg mL −1 , which compares favorably with representative reported AFP magnetic biosensors. OFGs demonstrate strong prospects in biosensing, geomagnetic measurements, and weak field detection.
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