论文标题
超快激光书面集成波导光学元件的空间资格
Space qualification of ultrafast laser written integrated waveguide optics
论文作者
论文摘要
基于卫星的量子技术代表了扩展可实现的量子通信范围的可能途径,从而允许在没有量子折扣的情况下构建全球量子网络。但是,在太空任务中,仪器可用的音量有限,足迹是可以使用的设备的关键规范。从这个意义上讲,集成的光学器件可能是非常有益的,因为它允许在小型和单片光子电路中进行微型化。在这项工作中,我们报告了飞秒激光微加工在玻璃中制造的波导的资格,以在低地球轨道空间环境中使用。特别是,我们将不同的激光书面集成设备(例如直波导,定向耦合器和马赫Zhhnder干涉仪)暴露于合适的质子和$γ$ -Ray辐照。我们的实验表明,没有通过辐射暴露引起其特征和性能的重大变化。我们的结果,加上激光写入光电电路对量子通信应用的高兼容性,为在未来的卫星任务中使用激光写入的集成光子组件铺平了道路。
Satellite-based quantum technologies represent a possible route for extending the achievable range of quantum communication, allowing the construction of worldwide quantum networks without quantum repeaters. In space missions, however, the volume available for the instrumentation is limited, and footprint is a crucial specification of the devices that can be employed. Integrated optics could be highly beneficial in this sense, as it allows for the miniaturization of different functionalities in small and monolithic photonic circuits. In this work, we report on the qualification of waveguides fabricated in glass by femtosecond laser micromachining for their use in a low Earth orbit space environment. In particular, we exposed different laser written integrated devices, such as straight waveguides, directional couplers, and Mach-Zehnder interferometers, to suitable proton and $γ$-ray irradiation. Our experiments show that no significant changes have been induced to their characteristics and performances by the radiation exposure. Our results, combined with the high compatibility of laser-written optical circuits to quantum communication applications, pave the way for the use of laser-written integrated photonic components in future satellite missions.