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Damping Off Terahertz Sound Modes of a Liquid upon Immersion of Nanoparticles

机译:在浸入纳米颗粒时擦除液体的太赫兹声模式

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The control of phonon propagation in nanoparticle arrays is one of the frontiers of nanotechnology, potentially enabling the discovery of materials with unknown functionalities for potential innovative applications. The exploration of the terahertz window appears quite promising as phonons in this range are the leading carriers of heat transport in insulators and their control is the key to implement devices for heat flow management. Unfortunately, this scientific field is still in its infancy, and even a basic topic such as the influence of floating nanoparticles on the terahertz phonon propagation of a colloidal suspension still eludes a firm answer. Shedding some light on this topic is the main motivation of the present work, which focuses an inelastic Xray scattering (IXS) measurements on a dilute suspension of Au nanospheres in water. Measured spectra showed a nontrivial shape displaying multiple inelastic features that, based on a Bayesian inference analysis, we assign to phonon modes propagating throughout the nanoparticle interior. Surprisingly, the spectra bear no evidence of propagating modes, which are known to dominate the spectrum of pure water, owing to the scattering that these modes suffer from the sparse nanoparticles in suspension. In perspective, this finding may inspire simple routes to manipulate high-frequency acoustic propagation in hybrid-liquid and solid-materials.
机译:纳米粒子阵列中的声子传播的控制是纳米技术的前沿之一,可能能够发现具有未知功能的材料,用于潜在的创新应用。 Terahertz窗口的探索出现非常希望,因为在该范围内是神经基位的主导,并且绝缘体中的热传输的领先载体,它们的控制是实现热流管理装置的关键。不幸的是,这种科学领域仍处于起步阶段,甚至是浮动纳米颗粒对胶体悬架的太赫兹窥探繁殖的基本话题,仍然露出了坚实的答案。在这一主题上缩小了一些亮点是本作本作工作的主要动机,它将无弹性X射线散射(IXS)测量在水中的Au纳米球的稀释悬浮液上进行了测量。测量光谱显示出基于贝叶斯推理分析的多重非弹性特征的非活动形状,我们将传播到整个纳米颗粒内部传播的声子模式。令人惊讶的是,由于这些模式在悬浮液中稀疏纳米颗粒的散射越来越散射,没有众所周知,谱没有据称传播模式的证据。在视角下,该发现可以激发简单的路线来操纵杂交 - 液体和固体材料中的高频声学传播。

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