Zagolla Volker, Tremblay Eric, Moser Christophe
École Polytechnique Fédérale de Lausanne, Laboratory of Applied Photonics Devices, CH-1015 Lausanne, Switzerland.
Opt Express. 2012 Nov 5;20(23):A924-31.
We report on the development of an opto-fluidic waveguide coupling mechanism for planar solar concentration. This mechanism is self-adaptive and light-responsive to efficiently maintain waveguide coupling and concentration independent of incoming light's direction. Vapor bubbles are generated inside a planar, liquid waveguide using infrared light on an infrared absorbing glass. Visible light focused onto the bubble is then reflected by total internal reflection (TIR) at the liquid-gas interface and coupled into the waveguide. Vapor bubbles inside the liquid are trapped by a thermal effect and are shown to self-track the location of the infrared focus. Experimentally we show an optical to optical waveguide coupling efficiency of 40% using laser light through a single commercial lens. Optical simulations indicate that coupling efficiency > 90% is possible with custom optics.
我们报道了一种用于平面太阳能聚光的光流体波导耦合机制的开发。该机制具有自适应和光响应特性,能有效维持波导耦合和聚光,且与入射光方向无关。利用红外光照射红外吸收玻璃,在平面液体波导内产生气泡。然后,聚焦在气泡上的可见光在液 - 气界面通过全内反射(TIR)反射并耦合到波导中。液体内部的气泡因热效应而被困住,并显示出能自动跟踪红外焦点的位置。通过实验,我们展示了使用激光通过单个商用透镜实现的光到光波导耦合效率为40%。光学模拟表明,使用定制光学器件时耦合效率有可能超过90%。