双稳态
碳纳米管
谐振器
签名(拓扑)
纳米技术
纳米力学
材料科学
咬合
纳米管
光电子学
原子力显微镜
计算机科学
数学
几何学
计算机图形学(图像)
作者
Sharon Rechnitz,Tal Tabachnik,Shlomo Shlafman,Michael Shlafman,Yuval Yaish
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-09-07
卷期号:22 (18): 7304-7310
被引量:7
标识
DOI:10.1021/acs.nanolett.2c01187
摘要
Bistable arched beams exhibiting Euler-Bernoulli snap-through buckling are widely investigated as promising candidates for various potential applications, such as memory devices, energy harvesters, sensors, and actuators. Recently, we reported the realization of a buckled suspended carbon nanotube (CNT) based bistable resonator, which exhibits a unique three-dimensional snap-through transition and an extremely large change in frequency as a result. In this article, we address a unique characteristic of these devices in which a significant change in the DC conductance is also observed at the mechanical snap-through transition. Through the analysis of this phenomenon, we arrive at several important conclusions: we find that the common approach to determining CNT vibrational resonance amplitude is inaccurate; we find evidence that latching phenomena should be easily realizable, relevant for RF switches and nonvolatile memory devices. Finally, we present evidence for possible inner shell sliding, which is relevant for understanding interlayer coupling and moiré pattern research.
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