材料科学
可控性
晶体管
热膨胀
热的
离子键合
场效应晶体管
剪切(地质)
温度测量
光电子学
凝聚态物理
载流子
电荷(物理)
电子元件
工作(物理)
作者
Yamaguchi Takahide,Yosuke Sasama,Hiroyuki Takeya,Yoshihiko Takano,Taisuke Kageura,Hiroshi Kawarada
摘要
The ionic-liquid-gating technique can be applied to the search for novel physical phenomena at low temperatures because of its wide controllability of the charge carrier density. Ionic-liquid-gated field-effect transistors are often fragile upon cooling, however, because of the large difference between the thermal expansion coefficients of frozen ionic liquids and solid target materials. In this paper, we provide a practical technique for setting up ionic-liquid-gated field-effect transistors for low-temperature measurements. It allows stable measurements and reduces the electronic inhomogeneity by reducing the shear strain generated in frozen ionic liquid.
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