论文标题

用毫秒的时间分辨率对单纳米蒸发的光力测量

Optomechanical measurement of single nanodroplet evaporation with millisecond time-resolution

论文作者

Sbarra, Samantha, Waquier, Louis, Suffit, Stephan, Lemaître, Aristide, Favero, Ivan

论文摘要

实时跟踪液体液体液体液体的演变仍然是一个杰出的挑战。在这里,微型的光力谐振器检测到一个纳米圆形降落在表面上,并将其随后的蒸发量降低到二十个修饰者。设备的超高机械频率和灵敏度可以使时间分辨率低于毫秒,足以在环境条件下解决快速蒸发动力学。使用设备双重光学和机械能力,我们确定前十毫秒内发生在恒定接触半径下的蒸发,并以仅由开尔文效应统治的动力学,尽管周围的气体饱和,但仍会蒸发。在接下来的数百毫秒中,液滴进一步缩小,同时伴随着下面的水坑蔓延。在蒸发后的最终稳态中,表面稳定了延长的薄液膜。我们的光力学技术为实时监视所有这些阶段的独特可能性开放。

Tracking the evolution of an individual nanodroplet of liquid in real-time remains an outstanding challenge. Here a miniature optomechanical resonator detects a single nanodroplet landing on a surface and measures its subsequent evaporation down to a volume of twenty attoliters. The ultra-high mechanical frequency and sensitivity of the device enable a time resolution below the millisecond, sufficient to resolve the fast evaporation dynamics under ambient conditions. Using the device dual optical and mechanical capability, we determine the evaporation in the first ten milliseconds to occur at constant contact radius with a dynamics ruled by the mere Kelvin effect, producing evaporation despite a saturated surrounding gas. Over the following hundred of milliseconds, the droplet further shrinks while being accompanied by the spreading of an underlying puddle. In the final steady-state after evaporation, an extended thin liquid film is stabilized on the surface. Our optomechanical technique opens the unique possibility of monitoring all these stages in real-time.

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