Research on the transmission characteristics and fabrication process of photonic lanterns

As a waveguide device capable of realizing low-loss adiabatic transition from multiple single-mode fibers to a multimode fiber, the photonic lantern exhibits broad application prospects in fields such as mode division multiplexing communication, high-power laser manipulation, and astronomical observation. This paper systematically investigates the physical mechanism of mode evolution, numerical modeling methods, and transmission characteristic characterization of photonic lanterns. The full-process fabrication technology, including material pretreatment, bundle arrangement, tapering optimization, precision cleaving, and dissimilar splicing, is detailed, with key process factors analyzed. Comprehensive characterization shows transmission efficiency exceeding 98% at low power, while mode field tests verify mode evolution laws consistent with simulations, laying a theoretical foundation and technical support for the engineering application of photonic lanterns.

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Publication Details

Journal
iScience
Published
2026-09-24
DOI
https://doi.org/10.1016/j.isci.2026.117615
Primary Topic
Photonic and Optical Devices
Type
article
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Research on the transmission characteristics and fabrication process of photonic lanterns

Yao Lu, Zhuruixiang Sun, Xiang Li, Zilun Chen et al.
iScience
Photonic and Optical Devices
article

Research on the transmission characteristics and fabrication process of photonic lanterns

Yao Lu, Zhuruixiang Sun, Xiang Li, Zilun Chen, Zongfu Jiang, Tong Liu
article en

Abstract

As a waveguide device capable of realizing low-loss adiabatic transition from multiple single-mode fibers to a multimode fiber, the photonic lantern exhibits broad application prospects in fields such as mode division multiplexing communication, high-power laser manipulation, and astronomical observation. This paper systematically investigates the physical mechanism of mode evolution, numerical modeling methods, and transmission characteristic characterization of photonic lanterns. The full-process fabrication technology, including material pretreatment, bundle arrangement, tapering optimization, precision cleaving, and dissimilar splicing, is detailed, with key process factors analyzed. Comprehensive characterization shows transmission efficiency exceeding 98% at low power, while mode field tests verify mode evolution laws consistent with simulations, laying a theoretical foundation and technical support for the engineering application of photonic lanterns.

iScienceVol. 29(10)
National University of Defense Technology (CN), National Space Science Center (CN), Health Awareness (United States) (US), Space Engineering University (CN)
Openalex Percentile: Top 22%
Photonic and Optical Devices
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Research on the transmission characteristics and fabrication process of photonic lanterns — Yao Lu, Zhuruixiang Sun, et al. · iScience (2026) | TGRS Research Map | TGRS