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通过调整其形态控制单个声学纳米谐振器的品质因数。

Controlling the Quality Factor of a Single Acoustic Nanoresonator by Tuning its Morphology.

机构信息

FemtoNanoOptics Group , Université de Lyon, CNRS, Université Claude Bernard Lyon 1, Institut Lumière Matière , F-69622 Villeurbanne , France.

Interdisciplinary Laboratories for Advanced Materials Physics (I-LAMP) , Università Cattolica del Sacro Cuore , Brescia I-25121 , Italy.

出版信息

Nano Lett. 2018 Aug 8;18(8):5159-5166. doi: 10.1021/acs.nanolett.8b02096. Epub 2018 Jul 16.

Abstract

The mechanical vibrations of individual gold nanodisks nanopatterned on a sapphire substrate are investigated using ultrafast time-resolved optical spectroscopy. The number and characteristics of the detected acoustic modes are found to vary with nanodisk geometry. In particular, their quality factors strongly depend on nanodisk aspect ratio (i.e., diameter over height ratio), reaching a maximal value of ≈70, higher than those previously measured for substrate-supported nano-objects. The peculiarities of the detected acoustic vibrations are confirmed by finite-element simulations, and interpreted as the result of substrate-induced hybridization between the vibrational modes of a nanodisk. The present findings demonstrate novel possibilities for engineering the vibrational modes of nano-objects.

摘要

采用超快时间分辨光学光谱法研究了蓝宝石衬底上图案化的单个金纳米盘的机械振动。发现检测到的声波模式的数量和特征随纳米盘的几何形状而变化。特别是,它们的品质因数强烈依赖于纳米盘的纵横比(即直径与高度之比),达到约 70 的最大值,高于以前测量的基底支撑的纳米物体的品质因数。通过有限元模拟证实了所检测到的声振动的特殊性,并将其解释为纳米盘的振动模式与衬底诱导的杂化的结果。本研究结果为纳米物体的振动模式的工程设计展示了新的可能性。

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