会议论文详细信息
International Symposium on Materials and Electrical Engineering 2017
Noise Properties of the Faraday Effect Measurement Systems
材料科学;电工学
Handoko, D.^1 ; Hifzhi, A.^1 ; Soedarmawan, L.^1 ; Aman, M.^1 ; Sugihartono, I.^2 ; Handoko, E.^2 ; Sudarmaji, A.^1
Physics Department, Faculty of Mathematics and Natural Sciences, Universitas Indonesia, Indonesia^1
Jurusan Fisika, Universitas Negeri Jakarta, Indonesia^2
关键词: Computer industry;    Electronic measurements;    Lock-in amplifier;    Lock-in frequencies;    Low-noise measurements;    Magnetic features;    Noise characteristic;    Photodiode detector;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/384/1/012021/pdf
DOI  :  10.1088/1757-899X/384/1/012021
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

Nowadays, nanomagnetic devices have a main role in computer industries. To observe magnetic features of the nanomagnetic device, Magneto-optical effects such as Kerr effect and Faraday effect can be used. We report the fabrication of the Faraday effect measurement setup for characterization of nanomagnetic elements. With achievement of low noise measurement configuration by precision electronic measurements, Faraday effect was observed. The essence of the experiment is to measure a light intensity that is transmitted from the transparent magnetic material. Light intensity is measured by a photodiode detector (Hamamatsu S5870) which produced the laser-induced photocurrent. Using transimpedance amplifier, the signal is converted to the voltage which is measured by the lock in amplifier (Stanford Research SR810). By performing the measurement at different lock-in frequencies and different analyzer angles, we systematically analyzed various random noise sources and their effect to the signal to noise ratio. The interestingly, the noise characteristics of the measured photocurrent exhibit a 1/f noise behavior with a scaling exponent practically 1.

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