论文标题
空心核光子晶体纤维用于电动纤维系统
Hollow-core photonic crystal fibers for Power-over-Fiber systems
论文作者
论文摘要
空心光子光子晶体纤维技术的研究成就允许确定诸如提供高功率激光束的出色平台之类的纤维。实际上,该光纤家族为高功率束传递而成功的关键特性是它们有效地通过空白空间有效传输光线,并且与纤维微结构的相互作用最小。在这种情况下,在这里,我们通过证明其用作有前途的电动纤维系统平台来扩大基于空心核纤维的光束递送应用的框架。因此,我们报告使用管状空心核纤维将瓦特级连续波激光束传递到光伏转换器上并激活代表性摄像头电路。我们认为,此处报告的实验允许将空心核纤维识别为下一代电动机设备的合格候选者,这有可能能够提高当前基于固体纤维基于固体纤维的电力纤维系统的功率限制。
Research achievements in hollow-core photonic crystal fibers technology allow ascertaining such fibers as outstanding platforms for delivering high-power laser beams. Indeed, the key property underlying the success of this family of optical fibers for high-power beam delivery is their capability of efficiently transmitting light through empty space with minimal interaction with the fiber microstructure. In this context, here we widen the framework of hollow-core fiber-based beam delivery applications by demonstrating their utilization as promising platforms for Power-over-Fiber systems. Thus, we report on the use of a tubular-lattice hollow-core fiber to deliver a watt-level continuous-wave laser beam onto a photovoltaic converter and activate a representative camera circuit. We believe that the experiments reported herein allow identifying hollow-core fibers as eligible candidates for next-generation Power-over-Fiber devices potentially able to lift the power restrictions of current solid-core fiber-based Power-over-Fiber systems.