Near-infrared-laser-navigated dancing bubble within water via a thermally conductive interface

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Near-infrared-laser-navigated dancing bubble within water via a thermally conductive interface

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Frontiers Engineered biomimetic micro/nano-materials for tissue regeneration

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Near-infrared-laser-navigated dancing bubble within water via a thermally conductive interface

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

PDF] Periodic bouncing of a plasmonic bubble in a binary liquid by competing solutal and thermal Marangoni forces

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Nonmonotonic contactless manipulation of binary droplets via sensing of localized vapor sources on pristine substrates

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Temperature dependent on NPs. (a) The evolution of peak temperature (T

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Thermodynamically limited uncooled infrared detector using an ultra-low mass perforated subwavelength absorber

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Perfecting and extending the near-infrared imaging window

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

PDF) Near-infrared-laser-navigated dancing bubble within water via a thermally conductive interface

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Oscillation

Near-infrared-laser-navigated dancing bubble within water via a thermally  conductive interface

Positive and negative optical forces and the nanoscale Leidenfrost