Flexible passive integrated photonic devices with superior optical and mechanical performance

Author:

Luo Ye12,Sun Chunlei2ORCID,Ma Hui31,Wei Maoliang31,Li Junying31,Jian Jialing2,Zhong Chuyu31ORCID,Chen Zequn,Tang Renjie2,Richardson Kathleen A.4,Lin Hongtao31ORCID,Li Lan2

Affiliation:

1. Zhejiang University

2. Westlake Institute for Advanced Study

3. College of Information Science and Electronic Engineering, Zhejiang University

4. University of Central Florida

Abstract

Flexible integrated photonics is a rapidly emerging technology with a wide range of possible applications in the fields of flexible optical interconnects, conformal multiplexing sensing, health monitoring, and biotechnology. One major challenge in developing mechanically flexible integrated photonics is the functional component within an integrated photonic circuit with superior performance. In this work, several essential flexible passive devices for such a circuit were designed and fabricated based on a multi-neutral-axis mechanical design and a monolithic integration technique. The propagation loss of the waveguide is calculated to be 4.2 dB/cm. In addition, we demonstrate a microring resonator, waveguide crossing, multimode interferometer (MMI), and Mach–Zehnder interferometer (MZI) for use at 1.55 µm, each exhibiting superior optical and mechanical performance. These results represent a significant step towards further exploring a complete flexible photonic integrated circuit.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Leading Innovative and Entrepreneur Team Introduction Program of Zhejiang

Natural Science Foundation of Zhejiang Province

Foundation of Westlake Multidisciplinary Research Initiative Center

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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