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Temperature Dependence of Noise in Giant- and Tunneling Magnetoresistive Vortex Sensors

机译:巨磁电阻和隧道磁阻涡流传感器中噪声的温度依赖性

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摘要

Giant magnetoresistive (GMR) and tunneling magnetoresistive (TMR) spin valve sensors with a vortex-state free layer have been studied using resistance and noise measurements for temperatures from 50 to 400 K. A vortex-state free layer enables high saturation fields of the sensor while strongly reducing the phase noise and enabling a theoretically hysteresis-free transfer curve. The results show that the noise in both sensor types peaks at a temperature of about 200 K. Measurements in a saturated state enable a separation of electric and magnetic noise contributions and show that in contrast to TMR, both electric and magnetic noise contributions decrease with temperature for the GMR sample.
机译:研究了具有涡态自由层的巨型磁阻(GMR)和隧穿磁阻(TMR)自旋阀传感器,使用电阻和噪声测量的温度范围为50至400K。涡态自由层可实现传感器的高饱和场同时大大降低了相位噪声并实现了理论上无滞后的传输曲线。结果表明,两种传感器类型的噪声均在约200 K的温度下达到峰值。在饱和状态下进行的测量可分离出电磁噪声贡献,并且与TMR相比,电磁噪声的贡献均随温度而降低用于GMR样本。

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