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利用微杠杆倍增光镊力

Multiplying optical tweezers force using a micro-lever.

作者信息

Lin Chih-Lang, Lee Yi-Hsiung, Lin Chin-Te, Liu Yi-Jui, Hwang Jiann-Lih, Chung Tien-Tung, Baldeck Patrice L

机构信息

Inst. of Biomedical Engineering and Material, Central Taiwan Univ. of Science and Technology, Taichung, Taiwan.

出版信息

Opt Express. 2011 Oct 10;19(21):20604-9. doi: 10.1364/OE.19.020604.

Abstract

This study presents a photo-driven micro-lever fabricated to multiply optical forces using the two-photon polymerization 3D-microfabrication technique. The micro-lever is a second class lever comprising an optical trapping sphere, a beam, and a pivot. A micro-spring is placed between the short and long arms to characterize the induced force. This design enables precise manipulation of the micro-lever by optical tweezers at the micron scale. Under optical dragging, the sphere placed on the lever beam moves, resulting in torque that induces related force on the spring. The optical force applied at the sphere is approximately 100 to 300 pN, with a laser power of 100 to 300 mW. In this study, the optical tweezers drives the micro-lever successfully. The relationship between the optical force and the spring constant can be determined by using the principle of leverage. The arm ratio design developed in this study multiplies the applied optical force by 9. The experimental results are in good agreement with the simulation of spring property.

摘要

本研究展示了一种利用双光子聚合3D微制造技术制造的光驱动微杠杆,用于成倍增加光力。该微杠杆是一个第二类杠杆,由一个光阱球、一根梁和一个支点组成。在短臂和长臂之间放置一个微弹簧来表征所产生的力。这种设计能够通过微米级的光镊对微杠杆进行精确操纵。在光拖曳作用下,放置在杠杆梁上的球会移动,从而产生扭矩,该扭矩会在弹簧上产生相关的力。施加在球上的光力约为100至300皮牛,激光功率为100至300毫瓦。在本研究中,光镊成功驱动了微杠杆。光力与弹簧常数之间的关系可以通过杠杆原理来确定。本研究中开发的臂比设计将施加的光力放大了9倍。实验结果与弹簧特性的模拟结果吻合良好。

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