A new simultaneous method of Hall and magnetoresistance measurements at low and high magnetic field on liquid and amorphous metals, and semiconductors

M. Ogita, T. Ito, M. Hafezzullah, H. Nonoyama, M. Isai, I. Mogi, S. Awaji, K. Yokoo
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Abstract

The Hall signals of Ga and Hg metals at liquid and solid states obtained through a new simultaneous method have been examined and compared with those of amorphous metals and solid state semiconductors of Si and InSb single crystals. Liquid metals of Hg and Ga of 5 N pure, para and ferromagnetic films of amorphous iron, and single crystals of Si and InSb were used as samples. Liquid metals were enclosed in the cell made of Macor or Pyrex glass, in which ditch is 200 and 400 /spl mu/m deep. The temperature was monitored and controlled within 0.5/spl deg/C by a thermocouple buried at the bottom of the cell. DC magnetic field of low field less than 0.3 Tesla is applied with a lab electromagnet, a superconductor magnet for high magnetic field up to 9 Tesla. Liquid metals such as Hg and Ga show the Hall effect and negligible magnetoresistance effect in the solid state, but the magnetoresistance effect in the liquid state appears much larger than in the solid state and badly affects the Hall effect.. It is also found that there is the magnetoresistance effect even in Si single crystal although the effect cannot normally be observed in low magnetic field less than 1 Tesla. For the ferromagnetic materials, the Hall signal is very much affected by the magnetoresistance.
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一种同时测量液体、非晶金属和半导体在低、高磁场下霍尔和磁阻的新方法
本文用一种新的方法对液态和固态Ga和Hg金属的霍尔信号进行了检测,并与非晶态金属和Si和InSb单晶固态半导体的霍尔信号进行了比较。以液态金属Hg和Ga的5n纯膜、非晶铁的对磁膜和铁磁膜以及Si和InSb的单晶为样品。液态金属被封闭在Macor或Pyrex玻璃制成的槽内,槽深分别为200和400 /spl mu/m。通过埋在电池底部的热电偶监测和控制温度在0.5/spl℃/C内。使用实验室电磁铁,施加低场小于0.3特斯拉的直流磁场,高磁场可达9特斯拉的超导体磁铁。液态金属如Hg和Ga在固态时表现出霍尔效应,磁阻效应可以忽略不计,但液态时的磁阻效应比固态时大得多,严重影响霍尔效应。还发现即使在硅单晶中也存在磁阻效应,但在低于1特斯拉的低磁场下通常无法观察到这种效应。对于铁磁材料,霍尔信号受磁阻的影响很大。
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