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Titlebook: High Sensitivity Magnetometers; Asaf Grosz,Michael J. Haji-Sheikh,Subhas C. Mukhop Book 2017 Springer International Publishing Switzerland

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楼主: 拖累
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Magnetoelectric Magnetometers,n to have advantages over semiconductor ones in the sensitivity, low price and radiation resistance. To predict the feasibility of a composite for sensor application, we propose the nomograph method based on given parameters of the composite components. The sensor sensitivity depends on the construc
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Giant Magnetoresistance (GMR) Magnetometers,of view. Its rapid development was initially promoted by their extensive use in the read heads of the massive data magnetic storage systems, in the digital world. Since then, novel proposals as basic solid state magnetic sensors have been continuously appearing. Due to their high sensitivity, small
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MEMS Lorentz Force Magnetometers,sitivity, wide dynamic range, high resolution, and low cost batch fabrication. These magnetometers have potential applications in biomedicine, navigation systems, telecommunications, automotive industry, space satellites, and non-destructive testing. This chapter includes the development of MEMS mag
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Superconducting Quantum Interference Device (SQUID) Magnetometers,an be transformed into magnetic flux. They consist of a superconducting loop interrupted by two resistively shunted Josephson tunnel junctions. Typically operated at 4.2 K, they exhibit magnetic flux noise levels of the order of 1 μΦ./Hz., corresponding to a noise energy of 10. J/Hz.. They can be us
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Planar Magnetometers,ly selection criterion for a magnetometer. Applications, such as magnetic micro-beads, micromagnetic scanning, non-destructive testing and medical applications like magnetic drug delivery dictate the requirement of magnetic sensors that are smaller in size and own single side measurement capability.
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