论文标题

纤维集成的微腔,以有效地产生相干声音子

Fiber-integrated microcavities for efficient generation of coherent acoustic phonons

论文作者

Ortiz, O., Pastier, F., Rodriguez, A., Priya, Lemaitre, A., Gomez-Carbonell, C., Sagnes, I., Harouri, A., Senellart, P., Giesz, V., Esmann, M., Lanzillotti-Kimura, N. D.

论文摘要

通过光泵探针实验产生相干的声子,使得在平面异质结构,等离激元共振器,微柱和纳米线的纳米级的声学特性中进行了研究。在样品的同一位置焦点和探测是泵探针实验的关键部分。在小物体的情况下,这尤其重要。该技术实际实施的主要实践挑战是:时空重叠的稳定性,焦点的可重复性和光学模式匹配条件。在这项工作中,我们解决了平面和微柱光载腔的这三个挑战。我们将研究的样品集成到单模式纤维中,以提升焦点光学元件以激发和检测一致的声音声子。在我们的样品中至少达到66%的最高反射率对比,使我们能够在至少一整天观察到稳定的相干声子信号,并在1UW的极低激发能力下观察到信号。单片样品结构是可运输的,可以提供一种执行可再现的插件实验的方法。

Coherent phonon generation by optical pump-probe experiments has enabled the study of acoustic properties at the nanoscale in planar heterostructures, plasmonic resonators, micropillars and nanowires. Focalizing both pump and probe on the same spot of the sample is a critical part of pump-probe experiments. This is particularly relevant in the case of small objects. The main practical challenges for the actual implementation of this technique are: stability of the spatio-temporal overlap, reproducibility of the focalization and optical mode matching conditions. In this work, we solve these three challenges for the case of planar and micropillar optophononic cavities. We integrate the studied samples to single mode fibers lifting the need for focusing optics to excite and detect coherent acoustic phonons. The resulting excellent reflectivity contrast of at least 66% achieved in our samples allows us to observe stable coherent phonon signals over at least a full day and signals at extremely low excitation powers of 1uW. The monolithic sample structure is transportable and could provide a means to perform reproducible plug-and-play experiments.

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