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Activation of Organic Photovoltaic Light Detectors Using Bend Leakage from Optical Fibers

机译:利用光纤的弯曲泄漏来激活有机光伏光检测器

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This work investigates the detection and subsequent utilization of leaked light from bends in a silica optical fiber using organic photovoltaic detectors. The optic power lost by single mode and multimode silica optical fibers was calibrated for bend radii between 1 and 7 mm for 532 and 633 nm light, exhibiting excellent agreement with previous theoretical solutions. The spatial location of maximum power leakage on the exterior of the fiber was found to exist in the same plane as the fiber, with a 10 degrees offset from the normal. Two different organic photovoltaic detectors fabricated using a poly(3-hexylthiophene):indene-C-60-bisadduct donor acceptor blend cast from chloroform and chlorobenzene were fabricated to detect the leaked light. The two detectors exhibited different photovoltaic performances, predominantly due to different active layer thicknesses. Both devices showed sensitivity to leakage light, exhibiting voltages between 200 and 300 mV in response to leaked light from the fiber. The temporal responses of the devices were observed to differ, with a rise time from 10% to 90% of maximum voltage of 1430 mu s for the chlorobenzene device, and a corresponding rise time of 490 mu s for the higher performing chloroform device. The two OPVs were used to simultaneously detect leaked light from induced bends in the optical fiber, with the differing temporal profiles employed to create a unique time correlated detection signal with enhanced security. The delay between detection of each OPV voltage could be systematically varied, allowing for either a programmable and secure single detection signal or triggering of multiple events with variable time resolution. The results reported in this study present exciting avenues toward the deployment of this simple and noninvasive optical detection system in a range of different applications.
机译:这项工作研究了使用有机光伏探测器检测和随后利用石英光纤弯曲处泄漏的光的方法。对于532和633 nm的光,在1到7 mm之间的弯曲半径处,对单模和多模石英光纤所损失的光功率进行了校准,与先前的理论解决方案具有极好的一致性。发现光纤外部最大功率泄漏的空间位置与光纤位于同一平面,与法线偏移10度。使用由氯仿和氯苯铸造的聚(3-己基噻吩):茚-C-60-双加合物供体受体共混物制造的两种不同的有机光电探测器被制造出来,以检测泄漏的光。这两个检测器表现出不同的光伏性能,主要是由于不同的有源层厚度。两种设备均显示出对泄漏光的敏感性,响应于从光纤泄漏的光,其电压在200至300 mV之间。观察到设备的时间响应有所不同,对于氯苯设备,上升时间从最大电压1430μs的10%上升到90%,而对于性能更高的氯仿设备,相应的上升时间为490μs。这两个OPV用于同时检测来自光纤中感应弯曲的泄漏光,并采用不同的时间轮廓来创建具有增强安全性的唯一时间相关检测信号。每个OPV电压的检测之间的延迟可以系统地改变,从而允许使用可编程且安全的单个检测信号或以可变的时间分辨率触发多个事件。这项研究报告的结果为在各种不同应用中部署这种简单且无创的光学检测系统提供了令人兴奋的途径。

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