Optimal broadband starlight injection into a single-mode fibre with integrated photonic wavefront sensing

Author:

Norris BarnabyORCID,Betters ChristopherORCID,Wei Jin,Yerolatsitis Stephanos1ORCID,Amezcua-Correa Rodrigo1,Leon-Saval SergioORCID

Affiliation:

1. University of Central Florida

Abstract

In astronomy and related fields there is a pressing need to efficiently inject light, transmitted through the atmosphere, into a single-mode fibre. However this is extremely difficult due to the large, rapidly changing aberrations imprinted on the light by the turbulent atmosphere. An adaptive optics system must be used, but its effectiveness is limited by non-common-path aberrations and insensitivity to certain crucial modes. Here we introduce a new concept device - the hybrid mode-selective photonic lantern - which incorporates both focal plane wavefront sensing and broadband single-mode fibre injection into a single photonic package. The fundamental mode of an input multimode fibre is directly mapped over a broad (1.5 to 1.8μm) bandwidth to a single-mode output fibre with minimal (<0.1%) crosstalk, while all higher order modes are sent to a fast detector or spectrograph for wavefront sensing. This will enable an AO system optimised for maximum single-mode injection, sensitive to otherwise ‘blind’ modes and avoiding non-common-path wavefront-sensor aberrations.

Funder

Australian Research Council

National Aeronautics and Space Administration

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Focal-plane wavefront sensing with photonic lanterns II: numerical characterization and optimization;Journal of the Optical Society of America B;2023-11-16

2. The path to detecting extraterrestrial life with astrophotonics;Techniques and Instrumentation for Detection of Exoplanets XI;2023-10-05

3. 2023 Astrophotonics Roadmap: pathways to realizing multi-functional integrated astrophotonic instruments;Journal of Physics: Photonics;2023-07-18

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