arXiv · 2208.06148
Gas bubble photonics: Manipulating sonoluminescence light with fluorescent and plasmonic nanoparticles
Abstract
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.
Explore related subjects
Keep this discovery
Ivan S. Maksymov. 2022-08-12. Gas bubble photonics: Manipulating sonoluminescence light with fluorescent and plasmonic nanoparticles. https://arxiv.org/abs/2208.06148
Cite the original work for its findings. Save a collection to share your selection of sources.