Opt Lett. 2018 Aug 15;43(16):3870-3873. doi: 10.1364/OL.43.003870.
Two-photon polymerization was employed for fabricating microtools amenable to optical trapping and manipulation. A disk feature was included as part of the microtools and further functionalized by electron-beam deposition. The nanostructured gold layer on the disk facilitates off-resonant plasmonic heating upon illumination with a laser beam. As a consequence, natural convection characterized by the typical toroidal shape resembling that of Rayleigh-Bénard flow can be observed. A velocity of several μm·s is measured for 2 μm microspheres dispersed in the surroundings of the microtool. To the best of our knowledge, this is the first time that thermoplasmonic-induced natural convection is experimentally demonstrated using a mobile heat source.
双光子聚合技术被用于制造适用于光捕获和操纵的微工具。微工具的一部分包含一个圆盘特征,并通过电子束沉积进一步功能化。圆盘上的纳米结构金层在激光照射下促进非共振等离子体加热。结果,可以观察到具有典型的环形形状类似于瑞利-贝纳德流的自然对流。对于分散在微工具周围的 2μm 微球,测量到的速度为几μm·s。据我们所知,这是首次使用移动热源实验证明热等离子体诱导的自然对流。