supported by the National Natural Science Foundation of China(Grant Nos.52192602,62488201,52071222,51925103,52271149;52201183);the Guangdong Major Project of Basic and Applied Basic Research,China(Grant No.2019B030302010);the Guangdong Basic and Applied Basic Research Foundation(Grant No.2023A1515110145);the National Key Research and Development Program of China(Grant No.2021YFA0716302);the Innovation Program of Shanghai Municipal Education Commission(Grant No.2021-01-07-00-09-E00114);the Innovation Program of Shanghai Science and Technology(Grant No.23520760700);the Aviation Foundation(Grant No.2023Z0530S6004);the financial support from Program 173(Grant No.2020-JCIQ-ZD-186-01);the Space Utilization System of China Manned Space Engineering(Grant No.KJZ-YY-NCL08)。
The development and deployment of giant magnetoimpedance(GMI)sensors have been significantly hampered by their limited sensitivity to weak magnetic fields and pronounced thermal drift phenomena,both of which are intri...
supported by the National Natural Science Foundation of China (No.51101113);the Tianjin Natural Science Foundation (Nos.14JCYBJC16200 and 15JCZDJC38700)
The effect of sample geometry aspect ratio (l/w) on the giant magnetoimpedance (GMI) in Fe67Co18Si11B4 amorphous ribbons was investigated systematically. The GMI profiles were measured as a function of the externa...
Giant magnetoimpedance effect (GMI) is a subject of special interest proved by applied electrodynamic and technological applications. GMI effect in ferromagnetic tubes is connected with the high sensitivity of the mag...
supported by the Science and Technology Key Project of Zhejiang Province,China (Grant No.2006C21085);the Xinmiao Project of Zhejiang Province,China (Grant No.2007R40G2170041)
The soft magnetic properties and giant magnetoimpedance(GMI) effect of the multilayered structure(F/SiO2)3/Ag/(SiO2/F)3(F≡Fe71.5Cu1Cr2.5V4Si12B9) films,which were prepared by radio frequency sputtering without and wi...
supported by the Walailak Universitys Research Unit Fund
Monolayered Co and trilayered Co/Cu/Co were electroplated on 485 μm-diameter Cu wires using the bath pH 2.5. These wires can be functioned as magnetic sensors owing to their magnetoimpedance (MI) effect. By measuri...
Ferromagnetic resonance (FMR), Ferromagnetic antirresonance (FMAR) and low field magnetoimpedance (MI) are the characteristic features of high frequency losses in applied fields. While some results on FMR and FM...
Slight plastic deformation of 0 to 1% by cold rolling is proposed as a treatment which may modify the responses of magnetoimpedance (MI) sensor with an amorphous ribbon used as a sensitive element. The dependence of...
Supported by the National High Technology Research and Development Programme of China under Grant No 2003AA327010, and the National Natural Science Foundation of China under Grant No 60271028.
The microstructure of CosoNi22Ga28 ribbon with the L10 structure is examined. The band-like morphology is observed. These bands with the width in a range of 40-200 nm appear along the transverse direction of the ribbo...