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通过随机激光发射研究颗粒物质的时间分辨动力学。

Time-resolved dynamics of granular matter by random laser emission.

机构信息

Department of Physics, University Sapienza, Piazzale Aldo Moro, 5, 00185, Rome, Italy.

出版信息

Sci Rep. 2013;3:2251. doi: 10.1038/srep02251.

Abstract

Because of the huge commercial importance of granular systems, the second-most used material in industry after water, intersecting the industry in multiple trades, like pharmacy and agriculture, fundamental research on grain-like materials has received an increasing amount of attention in the last decades. In photonics, the applications of granular materials have been only marginally investigated. We report the first phase-diagram of a granular as obtained by laser emission. The dynamics of vertically-oscillated granular in a liquid solution in a three-dimensional container is investigated by employing its random laser emission. The granular motion is function of the frequency and amplitude of the mechanical solicitation, we show how the laser emission allows to distinguish two phases in the granular and analyze its spectral distribution. This constitutes a fundamental step in the field of granulars and gives a clear evidence of the possible control on light-matter interaction achievable in grain-like system.

摘要

由于颗粒系统具有巨大的商业重要性,是仅次于水的工业中使用第二多的材料,广泛应用于制药和农业等多个行业,因此近几十年来,对颗粒状材料的基础研究受到了越来越多的关注。在光子学中,颗粒材料的应用仅得到了初步的研究。我们报告了通过激光发射获得的第一个颗粒的相图。通过使用其随机激光发射,研究了在三维容器中处于液体溶液中的垂直振动颗粒的动力学。颗粒的运动是机械激励的频率和幅度的函数,我们展示了激光发射如何能够区分颗粒的两个相,并分析其光谱分布。这是颗粒领域的一个基本步骤,清楚地证明了在颗粒状系统中实现光物质相互作用控制的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db42/3718206/b5db81677bb0/srep02251-f1.jpg

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