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- W4287999194 abstract "Along a single strand of micro-capillary optical waveguide, we achieved an efficient transfer of the light momentum onto the liquid contained there within, successfully atomizing it into nanoscale droplets. A hollow optical fiber (HOF), with a ring core and central air hole, was used to optically drive jetting of non-conducting transparent liquid of sub-pico liter volume, out of a surface-treated facet orifice, producing droplets ranging from nano to micrometer scale. These droplets were carried over the propagating light field forming a spherical cone, which were then deposited on a silica substrate in a Gaussian spatial distribution. The deposited patterns and sizes of individual droplets were characterized as a function of the laser power, irradiation time, and distance between the HOF and a substrate. This HOF based laser driven atomization technique obviates imperative electrode or aerial pressure requirements in prior methods, opening a new pathway to drastically scale down the form-factor of liquid jetting devices, and has a high potential to in-situ atomization and delivery of bio-medical non-conducting liquids in a microscopic environment, which was not possible in prior arts." @default.
- W4287999194 created "2022-07-26" @default.
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- W4287999194 date "2019-12-04" @default.
- W4287999194 modified "2023-10-16" @default.
- W4287999194 title "Laser-driven jetting of nanoscale non-conducting liquid droplets via hollow optical fiber" @default.
- W4287999194 doi "https://doi.org/10.48550/arxiv.1912.01915" @default.
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