The understanding of the shrinkage dynamics of plasmonic bubbles formed around metallic nanoparticles immersed in liquid and irradiated by a resonant light source is crucial for the usage of these bubbles in numerous applications. In this paper, we experimentally show and theoretically explain that a plasmonic bubble during its shrinkage undergoes two different phases: first, a rapid partial bubble shrinkage governed by vapor condensation and, second, a slow diffusion-controlled bubble dissolution. The history of the bubble formation plays an important role in the shrinkage dynamics during the first phase as it determines the gas-vapor ratio in the bubble composition. Higher laser powers lead to more vaporous bubbles, while longer pulses an...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...
The understanding of the shrinkage dynamics of plasmonic bubbles formed around metallic nanoparticle...
Noble metal nanoparticles immersed in a liquid and irradiated by resonant light can rapidly heat up ...
Under continuous laser irradiation, noble metal nanoparticles immersed in water can quickly heat up,...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...
The understanding of the shrinkage dynamics of plasmonic bubbles formed around metallic nanoparticle...
Noble metal nanoparticles immersed in a liquid and irradiated by resonant light can rapidly heat up ...
Under continuous laser irradiation, noble metal nanoparticles immersed in water can quickly heat up,...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
When illuminated by a laser, plasmonic nanoparticles immersed in water can very quickly and strongly...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...