论文标题
气泡光子学:用荧光和等离子纳米颗粒操纵声发光光
Gas bubble photonics: Manipulating sonoluminescence light with fluorescent and plasmonic nanoparticles
论文作者
论文摘要
用声压波辐射的液体中气泡的振荡可能会导致令人着迷的物理现象,称为Sonolumumuminomeinence,其中崩溃的气泡在广泛的光谱范围内散发出光。但是,出于实际目的,这种生成的光的强度通常很弱。最近,已经证明纳米颗粒可用于提高声发光的效率,从而使人们能够产生足够强烈的光,以实现光子学,生物医学和材料科学的许多应用。在本文中,我们回顾了纳米颗粒增强的声发光领域的最新成就,并展示了其实际应用的观点。
Oscillations of gas bubbles in liquids irradiated with acoustic pressure waves may result in an intriguing physical phenomenon called sonoluminescence, where a collapsing bubble emits the light in a broad optical spectral range. However, the intensity of the so-generated light is typically weak for practical purposes. Recently, it has been demonstrated that nanoparticles can be used to increase the efficiency of sonoluminescence, thereby enabling one to generate the light that is intense enough for a number of applications in photonics, biomedicine and material science. In this article, we review the latest achievements in the field of nanoparticle-enhanced sonoluminescence and showcase the perspectives of their practical applications.