Tremblay E J, Loterie D, Moser C
Laboratory of Applied Photonics Devices, École Polytechnique Fédérale de Lausanne (EPFL), Station 17, CH-1015 Lausanne, Switzerland.
Opt Express. 2012 Nov 5;20(23):A964-76.
We present a proof of principle demonstration of a reversible in-plane actuator activated by focused sunlight, and describe a concept for its use as a self-tracking mechanism in a planar solar concentrator. By actuating at the location of focused sunlight and splitting the solar spectrum for actuation energy, this phase change device aims to provide the adaptive mechanism necessary to efficiently couple concentrated solar light from a lens into a planar lightguide in a manner that is insensitive to incidence angle. As a preliminary demonstration we present a planar actuator array capable of in-plane deflections of >50μm when illuminated with focused light from a solar simulator and demonstrate solar light activated frustrated total internal reflection (FTIR) with the actuator array. We further propose how this solar induced FTIR effect can be modified using a dichroic facet array to self-adaptively couple and concentrate solar light into a planar lightguide.
我们展示了一种由聚焦太阳光激活的可逆平面致动器的原理验证演示,并描述了其在平面太阳能聚光器中用作自跟踪机制的概念。通过在聚焦太阳光的位置进行致动并将太阳光谱分离以获取致动能量,这种相变装置旨在提供一种自适应机制,以有效地将来自透镜的聚光太阳光耦合到平面光波导中,且该方式对入射角不敏感。作为初步演示,我们展示了一个平面致动器阵列,当用来自太阳模拟器的聚焦光照射时,该阵列能够实现大于50μm的平面内偏转,并展示了该致动器阵列的太阳光激活的受抑全内反射(FTIR)。我们还进一步提出了如何使用二向色面阵列来修改这种太阳能诱导的FTIR效应,以便将太阳光自适应地耦合并聚光到平面光波导中。