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March 13, 2026High Power Laser Science and Engineering4 citationsOpen Access

Multi-plane light conversion coherent beam combining

HZHongbing ZhouYYYuefang YanCLChenxu Liu

Key Points

  • This research aims to explore multi-plane light conversion as a method for coherent beam combining.
  • Numerical investigation of optical parameters for MPLC design.
  • Simulation of channel scalability concerning phase planes and spacing.
  • Analysis of beam steering in relation to multiplexed modes and mode fidelities.
  • Numerical demonstration of coherent beam combining with up to 1027 lasers.
  • Achieved near-diffraction-limited beam quality (M² of 1.16) with seven phase plates.
  • Main-lobe power ratio of 87.1% attained in a 10-mode MPLC with five phase plates.

Abstract

Abstract Multi-plane light conversion (MPLC) is a versatile technique that enables arbitrary manipulation of optical fields, and is numerically investigated as a novel avenue for coherent beam combining (CBC) applications. The optical parameters have been investigated to guide the MPLC design, indicating that the number of phase planes and plane spacing serve as pivotal factors. The channel scalability is simulated, revealing that the plane spacing should be increased in a larger array to maintain high performance under a few-plane limit. CBC of up to 1027 lasers has been numerically demonstrated with near-diffraction-limited beam quality ( M 2 of 1.16 and combining efficiency close to 100%) with only seven phase plates. Beam steering is investigated, revealing that steering capability is related to both the number of multiplexed modes in MPLC and their mode fidelities, and the main-lobe power ratio of 87.1% at one divergence angle is achieved in a 10-mode MPLC with five phase plates.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69b3acf302a1e69014ccf295https://doi.org/10.1017/hpl.2025.10095
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