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低温下硒化铋纳米线中机械振荡的表征

Characterization of Mechanical Oscillations in Bismuth Selenide Nanowires at Low Temperatures.

作者信息

Jasulaneca Liga, Poplausks Raimonds, Prikulis Juris, Dzene Elza, Yager Tom, Erts Donats

机构信息

Institute of Chemical Physics, University of Latvia, 19 Raina Blvd., LV-1586 Riga, Latvia.

Institute of Solid State Physics, University of Latvia, 8 Kengaraga Str., LV-1063 Riga, Latvia.

出版信息

Micromachines (Basel). 2023 Oct 7;14(10):1910. doi: 10.3390/mi14101910.

Abstract

A single transistor preamplifier circuit was designed to facilitate electrical detection of mechanical oscillations in nanoelectromechanical systems (NEMSs) at low temperatures. The amplifier was integrated in the close vicinity of the nanowire inside the cryostat to minimize cabling load and interference. The function of the circuit was impedance conversion for current flow measurements in NEMSs with a high internal resistance. The circuit was tested to operate at temperatures as low as 5 K and demonstrated the ability to detect oscillations in double-clamped bismuth selenide nanowires upon excitation by a 0.1 MHz-10 MHz AC signal applied to a mechanically separated gate electrode. A strong resonance frequency dependency on temperature was observed. A relatively weak shift in the oscillation amplitude and resonance frequency was measured when a DC bias voltage was applied to the gate electrode at a constant temperature.

摘要

设计了一种单晶体管前置放大器电路,以利于在低温下对纳米机电系统(NEMS)中的机械振荡进行电学检测。该放大器集成在低温恒温器内纳米线的紧邻位置,以最小化布线负载和干扰。该电路的功能是对具有高内阻的NEMS中的电流流动测量进行阻抗转换。测试表明该电路能在低至5 K的温度下工作,并展示了在施加到机械分离的栅电极上的0.1 MHz - 10 MHz交流信号激发下,检测双端夹紧的硒化铋纳米线中振荡的能力。观察到共振频率对温度有很强的依赖性。在恒定温度下对栅电极施加直流偏置电压时,测量到振荡幅度和共振频率有相对较小的偏移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1251/10609109/ac90b2e8994c/micromachines-14-01910-g001.jpg

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