Institute of Sensor and Actuator Systems, TU Wien, Gusshausstrasse 27-29, 1040 Vienna, Austria.
Institute of Electrodynamics, Microwave and Circuit Engineering, TU Wien, Gusshausstrasse 25, 1040 Vienna, Austria.
Nano Lett. 2023 May 24;23(10):4344-4350. doi: 10.1021/acs.nanolett.3c00605. Epub 2023 May 11.
One of the challenges of nanoelectromechanical systems (NEMS) is the effective transduction of the tiny resonators. Vertical structures, such as nanomechanical pillar resonators, which are exploited in optomechanics, acoustic metamaterials, and nanomechanical sensing, are particularly challenging to transduce. Existing electromechanical transduction methods are ill-suited as they put constraints on the pillars' material and do not enable a transduction of freestanding pillars. Here, we present an electromechanical transduction method for single nanomechanical pillar resonators based on surface acoustic waves (SAWs). We demonstrate the transduction of freestanding nanomechanical platinum-carbon pillars in the first-order bending and compression mode. Since the principle of the transduction method is based on resonant scattering of a SAW by a nanomechanical resonator, our transduction method is independent of the pillar's material and not limited to pillar-shaped geometries. It represents a general method to transduce vertical mechanical resonators with nanoscale lateral dimensions.
纳米机电系统 (NEMS) 的挑战之一是如何有效地转换微型谐振器。垂直结构,如纳米机械支柱谐振器,在光机械、声超材料和纳米机械传感中得到了广泛应用,但很难进行转换。现有的机电转换方法并不适用,因为它们对支柱的材料有限制,并且不能实现独立支柱的转换。在这里,我们提出了一种基于表面声波 (SAW) 的用于单个纳米机械支柱谐振器的机电转换方法。我们演示了一阶弯曲和压缩模式下自由纳米机械铂-碳支柱的转换。由于转换方法的原理基于 SAW 通过纳米机械谐振器的共振散射,因此我们的转换方法不依赖于支柱的材料,并且不限于柱状几何形状。它代表了一种用于转换具有纳米级横向尺寸的垂直机械谐振器的通用方法。