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Dynamics of optical matter creation and annihilation in colloidal liquids controlled by laser trapping power

机译:激光俘获功率控制胶体液体中光物质产生和an灭的动力学

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摘要

We investigate the dynamics of optical matter creation and annihilation in a colloidal liquid that was employed to construct an all-optical switch. It is revealed that the switching-on process can be characterized by the Fermi-Dirac distribution function, while the switching-off process can be described by a steady state followed by a single exponential decay. The phase transition times exhibit a strong dependence on trapping power. With an increasing trapping power, while the switching-on time decreases rapidly, the switch-off time increases significantly, indicating the effects of optical binding and van der Waals force on the lifetime of the optical matter.
机译:我们研究了用于构造全光开关的胶体液体中光物质产生和an灭的动力学。可以看出,接通过程可以用费米-狄拉克分布函数来表征,而断开过程可以用稳态然后是单指数衰减来描述。相变时间表现出对俘获功率的强烈依赖性。随着捕集功率的增加,开启时间迅速减少,而关闭时间却显着增加,这表明光学结合和范德华力对光学物质寿命的影响。

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