Arain Muzammil A, Korth William Z, Williams Luke F, Martin Rodica M, Mueller Guido, Tanner D B, Reitze David H
Department of Physics, University of Florida, P O Box 118440, Gainesville, Florida 32611, USA.
Opt Express. 2010 Feb 1;18(3):2767-81. doi: 10.1364/OE.18.002767.
We present an experimental demonstration of adaptive control of modal properties of optical beams. The control is achieved via heat-induced photothermal actuation of transmissive optical elements. We apply the heat using four electrical heaters in thermal contact with the element. The system is capable of controlling both symmetrical and astigmatic aberrations providing a powerful means for in situ correction and control of thermal aberrations in high power laser systems. We demonstrate a tunable lens with a focusing power varying from minus infinity to -10 m along two axes using SF57 optical glass. Applications of the proposed system include laser material processing, thermal compensation of high laser power radiation, and optical beam steering.
我们展示了对光束模态特性进行自适应控制的实验演示。该控制是通过对透射光学元件进行热致光热驱动来实现的。我们使用与该元件热接触的四个电加热器来施加热量。该系统能够控制对称像差和像散像差,为高功率激光系统中热像差的原位校正和控制提供了一种强大的手段。我们使用SF57光学玻璃展示了一种可调谐透镜,其沿两个轴的聚焦功率从负无穷大变到-10米。所提出系统的应用包括激光材料加工、高激光功率辐射的热补偿以及光束转向。