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February 28, 2026Photonics0 citationsOpen Access

High-Efficiency, 10-Watt-Level 6.45 µm Mid-Infrared Source Based on a ZnGeP2 Optical Parametric Oscillator

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YFYou Tong FangChinese Academy of SciencesYSY. R. ShenUniversity of Science and Technology of ChinaEWErpeng Wang

Key Points

  • The research aims to develop a high-efficiency mid-infrared laser source suitable for medical applications.
  • Developed a 10W-level all-solid-state nanosecond laser source at 6.45 μm.
  • Utilized a Ho:YAG MOPA pumped ring-cavity ZnGeP2 optical parametric oscillator.
  • Investigated the effects of spot size, phase-matching scheme, and crystal length on performance.
  • Achieved a record-high average output power of 14.6 W at 6.45 μm.
  • Obtained an optical-to-optical conversion efficiency of 17.57%.
  • Achieved peak power of 51.7 kW with excellent power stability (1.45% fluctuation over 120 min).

Abstract

The 6.45 μm mid-infrared laser is highly promising for medical applications due to its efficient tissue ablation with minimal collateral damage. In this work, we demonstrate a stable and compact 10W-level, all-solid-state nanosecond laser source at 6.45 μm based on a Ho:YAG MOPA pumped ring-cavity ZnGeP2 optical parametric oscillator (ZGP OPO). The influence of spot size, phase-matching scheme, and crystal length on the output performance was systematically investigated. Using a 30 mm long Type I ZGP crystal, the system achieved optimal performance: a record-high average output power of 14.6 W at 6.45 μm with an optical-to-optical conversion efficiency of 17.57%, a peak power of 51.7 kW, and excellent power stability (1.45% fluctuation over 120 min at 11.7 W). To our knowledge, this represents the highest reported output power and conversion efficiency for an OPO in this spectral region, surpassing previous sources by an order of magnitude in average power and showing nearly double efficiency. This work provides a stable and reliable laser source tool for application research for techniques such as laser ablation.

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Cite This Study

Fang et al. (2026) studied this question.

synapsesocial.com/papers/69a288590a974eb0d3c0433ahttps://doi.org/10.3390/photonics13030230
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