材料科学
调制(音乐)
执行机构
光力学
光电子学
弹性(物理)
等离子体子
纳米技术
透射率
声学
谐振器
计算机科学
物理
人工智能
复合材料
作者
Ferran Pujol‐Vila,Pau Güell‐Grau,J. Noguès,Mar Álvarez,Borja Sepúlveda
标识
DOI:10.1002/adfm.202213109
摘要
Abstract Soft optomechanical systems have the ability to reversibly respond to optical and mechanical external stimuli by changing their own properties (e.g., shape, size, viscosity, stiffness, color or transmittance). These systems typically combine the optical properties of plasmonic, dielectric or carbon‐based nanomaterials with the high elasticity and deformability of soft polymers, thus opening the path for the development of new mechanically tunable optical systems, sensors, and actuators for a wide range of applications. This review focuses on the recent progresses in soft optomechanical systems, which are here classified according to their applications and mechanisms of optomechanical response. The first part summarizes the soft optomechanical systems for mechanical sensing and optical modulation based on the variation of their optical response under external mechanical stimuli, thereby inducing mechanochromic or intensity modulation effects. The second part describes the soft optomechanical systems for the development of light induced mechanical actuators based on different actuation mechanisms, such as photothermal effects and phase transitions, among others. The final section provides a critical analysis of the main limitations of current soft optomechanical systems and the progress that is required for future devices.
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