English

Beamed UV sonoluminescence by aspherical air bubble collapse near liquid-metal microparticles

Optics 2019-05-17 v1 Soft Condensed Matter Biological Physics Fluid Dynamics

Abstract

Irradiation with UV-C band ultraviolet light is one of the most commonly used ways of disinfecting water contaminated by pathogens such as bacteria and viruses. Sonoluminescence, the emission of light from acoustically-induced collapse of air bubbles in water, is an efficient means of generating UV-C light. However, because a spherical bubble collapsing in the bulk of water creates isotropic radiation, the generated UV-C light fluence is insufficient for disinfection. Here, we show that we can create a UV light beam from aspherical air bubble collapse near a gallium-based liquid-metal microparticle. The beam is perpendicular to the metal surface and is caused by the interaction of sonoluminescence light with UV plasmon modes of the metal. We calculate that such beams can generate fluences exceeding 1010 mJ/cm2^2, which is sufficient to irreversibly inactivate most common pathogens in water with the turbidity of more than 55 Nephelometric Turbidity Units.

Keywords

Cite

@article{arxiv.1905.06740,
  title  = {Beamed UV sonoluminescence by aspherical air bubble collapse near liquid-metal microparticles},
  author = {Bradley Boyd and Sergey A. Suslov and Sid Becker and Andrew D. Greentree and Ivan S. Maksymov},
  journal= {arXiv preprint arXiv:1905.06740},
  year   = {2019}
}

Comments

4 pages