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Direct magnetic imaging of ferromagnetic domain structures by room temperature scanning Hall probe microscopy using a bismuth micro-Hall probe

机译:使用铋微霍尔探针通过室温扫描霍尔探针显微镜对铁磁畴结构进行直接磁成像

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摘要

A bismuth micro-Hall probe sensor with an integrated scanning tunnelling microscope tip was incorporated into a room temperature scanning Hall probe microscope system and successfully used for the direct magnetic imaging of microscopic domains of low coercivity perpendicular garnet thin films and demagnetized strontium ferrite permanent magnets. At a driving current of 800 μA, the Hall coefficient, magnetic field sensitivity and spatial resolution of the Bi probe were 3.3 × 10-4 Ω/G, 0.38 G/√Hz and ∼ 2.8 μm, respectively. The room temperature magnetic field sensitivity of the Bi probe was comparable to that of a semiconducting 1.2μm GaAs/AlGaAs heterostructure micro-Hall probe, which exhibited a value of 0.41 G/√Hz at a maximum driving current of 2μA.
机译:带有集成扫描隧道显微镜尖端的铋微霍尔探头传感器被集成到室温扫描霍尔探头显微镜系统中,并成功用于低矫顽力垂直石榴石薄膜和去磁锶铁氧体永磁体的微观区域的直接磁成像。在800μA的驱动电流下,Bi探头的霍尔系数,磁场灵敏度和空间分辨率分别为3.3×10-4Ω/ G,0.38 G /√Hz和2.8μm。 Bi探针的室温磁场灵敏度与1.2μm半导体GaAs / AlGaAs异质结构微霍尔探针的室温磁场灵敏度相当,后者在2μA的最大驱动电流下显示为0.41 G /√Hz。

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