Li Yuebing, Qin Yaqiang, Wang Heqiang, Huang Lu, Guo Honglian, Jiang Yuqiang
Opt Express. 2024 Mar 25;32(7):12358-12367. doi: 10.1364/OE.519449.
Due to the characteristics of ultra-short pulse width and ultra-high peak power, femtosecond pulse laser can effectively induce nonlinear optical effects in trapped objects. As a result, it holds great value in the fields of micro and nano manipulation, microfluidics, and cell biology. However, the nonlinear optical effects on the stiffness of femtosecond optical traps remain unclear. Calibration of trap stiffness is crucial for accurately measuring forces and manipulating small particles. In this paper, we compare the stiffness between femtosecond optical traps and continuous wave optical traps. Experimental results demonstrate that the stiffness of the femtosecond optical trap in the splitting direction is greater than that in other directions and the stiffness of the continuous wave optical trap under the same laser power condition. Additionally, as the laser power increases, the stiffnesses of both the femtosecond optical trap and the continuous wave optical trap gradually increases. In contrast to a linear increase of the continuous wave optical trap, the stiffness of the femtosecond optical trap exhibits an exponential rise with increasing laser power. This research provides guidance and reference for improving the force measurement accuracy of femtosecond optical tweezer system.
由于具有超短脉冲宽度和超高峰值功率的特性,飞秒脉冲激光能够有效地在捕获物体中诱导非线性光学效应。因此,它在微纳操纵、微流体和细胞生物学领域具有重要价值。然而,飞秒光镊对刚度的非线性光学效应仍不清楚。光镊刚度的校准对于精确测量力和操纵小颗粒至关重要。在本文中,我们比较了飞秒光镊和连续波光镊之间的刚度。实验结果表明,在相同激光功率条件下,飞秒光镊在分裂方向上的刚度大于其他方向以及连续波光镊的刚度。此外,随着激光功率的增加,飞秒光镊和连续波光镊的刚度都逐渐增加。与连续波光镊的线性增加不同,飞秒光镊的刚度随激光功率增加呈指数上升。本研究为提高飞秒光镊系统的力测量精度提供了指导和参考。