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用于高空间分辨率磁场检测的亚100纳米负弯曲电阻弹道传感器。

Sub-100-nm negative bend resistance ballistic sensors for high spatial resolution magnetic field detection.

作者信息

Gilbertson A M, Benstock D, Fearn M, Kormányos A, Ladak S, Emeny M T, Lambert C J, Ashley T, Solin S A, Cohen L F

出版信息

Appl Phys Lett. 2011 Feb 7;98(6):62106. doi: 10.1063/1.3554427. Epub 2011 Feb 10.

Abstract

We report the magnetic field detection properties of ballistic sensors utilizing the negative bend resistance of InSb∕In(1-x)Al(x)Sb quantum well cross junctions as a function of temperature and geometric size. We demonstrate that the maximum responsivity to magnetic field and its linearity increase as the critical device dimension is reduced. This observation deviates from the predictions of the classical billiard ball model unless significant diffuse boundary scattering is included. The smallest device studied has an active sensor area of 35×35 nm(2), with a maximum responsivity of 20 kΩ∕T, and a noise-equivalent field of 0.87μT∕Hz at 100 K.

摘要

我们报告了利用InSb∕In(1-x)Al(x)Sb量子阱交叉结的负弯曲电阻作为温度和几何尺寸函数的弹道传感器的磁场检测特性。我们证明,随着关键器件尺寸的减小,对磁场的最大响应度及其线性度会增加。除非考虑显著的漫反射边界散射,否则这一观察结果与经典台球模型的预测不符。所研究的最小器件的有源传感器面积为35×35 nm(2),在100 K时最大响应度为20 kΩ∕T,噪声等效场为0.87μT∕Hz。

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Tunable nanoscale graphene magnetometers.可调谐纳米级石墨烯磁强计。
Nano Lett. 2010 Jan;10(1):341-6. doi: 10.1021/nl903690y.
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Billiard model of a ballistic multiprobe conductor.弹道多探针导体的台球模型。
Phys Rev Lett. 1989 Oct 23;63(17):1857-1860. doi: 10.1103/PhysRevLett.63.1857.
4
Magnetoresistance in quantum wires: Boundary-roughness scattering.
Phys Rev B Condens Matter. 1991 May 15;43(14):11676-11685. doi: 10.1103/physrevb.43.11676.

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