光力学
纳米机电系统
材料科学
谐振器
光电子学
微波食品加热
联轴节(管道)
显微镜
氮化硅
扫描探针显微镜
振动
纳米技术
光学
硅
物理
声学
纳米医学
量子力学
纳米颗粒
冶金
作者
Hao Xu,Srisaran Venkatachalam,Toky Rabenimanana,Christophe Boyaval,Sophie Eliet,Flavie Braud,Eddy Collin,D. Théron,Xin Zhou
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-07-02
卷期号:24 (28): 8550-8557
标识
DOI:10.1021/acs.nanolett.4c01401
摘要
In this study, we present a novel platform based on scanning microwave microscopy for manipulating and detecting tiny vibrations of nanoelectromechanical resonators using a single metallic tip. The tip is placed on the top of a grounded silicon nitride membrane, acting as a movable top gate of the coupled resonator. We demonstrate its ability to map mechanical modes and investigate mechanical damping effects in a capacitive coupling scheme, based on its spatial resolution. We also manipulate the energy transfer coherently between the mode of the scanning tip and the underlying silicon nitride membrane, via parametric coupling. Typical features of optomechanics, such as anti-damping and electromechanically induced transparency, have been observed. Since the microwave optomechanical technology is fully compatible with quantum electronics and very low temperature conditions, it should provide a powerful tool for studying phonon tunnelling between two spatially separated vibrating elements, which could potentially be applied to quantum sensing.
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