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Towards Stable Trapping of Single Macromolecules in Solution

机译:稳定捕获单​​个大分子在溶液中

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摘要

The implementation of high instantaneous peak power of a femtosecond laser pulse at moderate time-averaged power (~10 mW) to trap latex nanoparticles, which is otherwise impossible with continuous wave illumination at similar power level, has recently been shown [De, A. K., Roy, D., Dutta, A. and Goswami, D. "Stable optical trapping of latex nanoparticles with ultrashort pulsed illumination", Appd. Opt., 48, G33 (2009)]. However, direct measurement of the instantaneous trapping force/stiffness due to a single pulse has been unsuccessful due to the fleeting existence (~100 fs) of the laser pulse compared with the much slower time scale associated with the available trapping force/stiffness calibration techniques, as discussed in this proceeding article. We also demonstrate trapping of quantum dots having dimension similar to macromolecules.
机译:飞秒激光脉冲的高瞬时峰值功率以中等时间平均功率(〜10 mW)的实现来捕获胶乳纳米颗粒,否则在类似功率水平的连续波照射下是不可能实现的[De,AK, Roy,D.,Dutta,A.和Goswami,D.“具有超短脉冲照明的乳胶纳米颗粒的稳定光学捕获”,附录。 Opt。48,G33(2009)]。然而,由于激光脉冲的短暂存在(〜100 fs),与单个捕获脉冲/刚度校准技术相关的时间尺度要慢得多,因此直接测量单个脉冲导致的瞬时捕获力/刚度是不成功的。 ,如本文所述。我们还展示了具有类似于大分子尺寸的量子点的俘获。

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