International audiencePlasmonic vapor nanobubbles are currently considered for a wide variety of applications ranging from solar energy harvesting and photoacoustic imaging to nanoparticle-assisted cancer therapy. Yet, due to their small size and unstable nature, their generation and consequences remain difficult to characterize. Here, building on a phase-field model, we report on the existence of strong pressure waves that are emitted when vapor nanobubbles first form around a laser-heated nanoparticle immersed in water and subsequently after bubble rebound. These effects are strongest when the fluid is locally brought high in its supercritical state, which may be realized with a short laser pulse. Because of the greatly out-of-equilibrium...
In fluids, pressure-driven cavitation bubbles have a nonlinear response that can lead to extremely h...
Laser-induced cavitation (LIC) bubbles and the shockwaves they form upon collapse are destructive to...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
International audiencePlasmonic vapor nanobubbles are currently considered for a wide variety of app...
Thermo-optically generated bubbles in water provide a powerful means for active matter control in mi...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
The laser generation of vapor bubbles around plasmonic nanoparticles can be enhanced through the app...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When plasmonic nanoparticles (PNPs) are illuminated by a light source with a plasmon frequency, an i...
In fluids, pressure-driven cavitation bubbles have a nonlinear response that can lead to extremely h...
Laser-induced cavitation (LIC) bubbles and the shockwaves they form upon collapse are destructive to...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
International audiencePlasmonic vapor nanobubbles are currently considered for a wide variety of app...
Thermo-optically generated bubbles in water provide a powerful means for active matter control in mi...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
The laser generation of vapor bubbles around plasmonic nanoparticles can be enhanced through the app...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When plasmonic nanoparticles (PNPs) are illuminated by a light source with a plasmon frequency, an i...
In fluids, pressure-driven cavitation bubbles have a nonlinear response that can lead to extremely h...
Laser-induced cavitation (LIC) bubbles and the shockwaves they form upon collapse are destructive to...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...