论文标题

多核光纤技术的天文应用

Astronomical Applications of Multi-Core Fiber Technology

论文作者

Jovanovic, Nemanja, Harris, Robert J., Cvetojevic, Nick

论文摘要

光纤通过允许将相对于望远镜安装在遥远且稳定的位置中的复杂的,通常大的仪器来改变天文仪器的设计。这些纤维还可以使信号从焦平面重新排列,以在光谱仪的入口处形成伪造的斜线,从而优化检测器的使用并同时研究成千上万的恒星或星系。尤其是多核纤维就传统纤维提供了几种有利的特性:1)单模内核之间的分离大大降低了,并且相对于自由固定纤维,2)它们提供了具有多纤维功能的单片包装,而3)它们在衍射极限下运行。这些属性已使单个组件光子灯笼,高度简化的光纤布拉格光栅和高级纤维模式乱扰的实现。此外,核心的精确网格已使有效的单模单模整体场单元的设计用于光谱。在本文中,我们概述了由多核纤维技术在天文学和概述未来发展领域的多核纤维技术实现的广泛应用程序。

Optical fibers have altered astronomical instrument design by allowing for a complex, often large instrument to be mounted in a remote and stable location with respect to the telescope. The fibers also enable the possibility to rearrange the signal from a focal plane to form a psuedo-slit at the entrance to a spectrograph, optimizing the detector usage and enabling the study of hundreds of thousands of stars or galaxies simultaneously. Multi-core fibers in particular offer several favorable properties with respect to traditional fibers: 1) the separation between single-mode cores is greatly reduced and highly regular with respect to free standing fibers, 2) they offer a monolithic package with multi-fiber capabilities and 3) they operate at the diffraction limit. These properties have enabled the realization of single component photonic lanterns, highly simplified fiber Bragg gratings, and advanced fiber mode scramblers. In addition, the precise grid of cores has enabled the design of efficient single-mode fiber integral field units for spectroscopy. In this paper, we provide an overview of the broad range of applications enabled by multi-core fiber technology in astronomy and outline future areas of development.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源