论文标题
用一维光子晶体成立的独立式SIN膜的机械研究
Mechanical investigations of free-standing SiN membranes patterned with one-dimensional photonic crystal structures
论文作者
论文摘要
提出了对具有一维光子晶体结构的各种预应力氮化膜的结构和振动特性的详细研究。图案区域附近的结构的拉伸应力相关变形是由原子力显微镜扫描确定的,而平面外膜振动的共振频率和质量因子是使用光学干涉测量测量的。我们表明,这些非侵入性测量结果以及有限元模拟的结果,提供了有关拉伸应力,弹性模量和这些纳米结构薄膜的密度的准确知识。获得的结果通过两种方式有趣:首先,它们表明,在各种光子应用中已经利用的这种高反射性薄膜具有高机械质量,这也使它们对光学力学和传感应用有吸引力。其次,它们代表了一种无损方法,用于确定可以适用于广泛脆弱的纳米结构薄膜的关键材料参数。
A detailed investigation of the structural and vibrational properties of various prestressed silicon nitride membranes patterned with one-dimensional photonic crystal structures is presented. The tensile stress-related deformation of the structure in the vicinity of the patterned area is determined by Atomic Force Microscopy scans, while the resonance frequencies and quality factors of the out-of-plane membrane vibrations are measured using optical interferometry. We show that these noninvasive measurements, combined with results of finite element simulations, provide accurate knowledge on the tensile stress, the elasticity modulus and the density of these nanostructured thin films. The obtained results are interesting in two ways: first, they show that such highly reflective thin membranes already exploited in various photonics applications possess high-mechanical quality, which also makes them attractive for optomechanics and sensing applications. Second, they represent a nondestructive method to determine key material parameters which can be applicable to a broad range of fragile nanostructured thin films.