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Optimized thermal management in 976 nm photonic crystal laser diodes

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【作者】 王亮; 张宇; 渠红伟; 齐爱谊; 周旭彦; 王宇飞; 隋佳桐; 徐传旺; 郑婉华;

【Author】 Liang Wang;Yu Zhang;Hongwei Qu;Aiyi Qi;Xuyan Zhou;Yufei Wang;Jiatong Sui;Chuanwang Xu;Wanghua Zheng;School of Intelligent Science and Technology, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences;Weifang Academy of Advanced Opto-Electronic Circuits;Laboratory of Solid-State Optoelectronics Information Technology, Institute of Semiconductors, Chinese Academy of Sciences;Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences;School of Information Science and Engineering, Shandong University;

【通讯作者】 渠红伟;郑婉华;

【机构】 School of Intelligent Science and Technology, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences; Weifang Academy of Advanced Opto-Electronic Circuits; Laboratory of Solid-State Optoelectronics Information Technology, Institute of Semiconductors, Chinese Academy of Sciences; Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences; School of Information Science and Engineering, Shandong University;

【摘要】 Photonic crystal [PC) laser diodes [LDs) exhibit high power and narrow divergence angle output. Enhancing their thermal characteristics is critical for improving device performance and reliability. In this study, we develop a 3D heat dissipation model for 976 nm PC LDs packaged in conduction-cooled heat sink mounts [CS-mounts). The steady-state thermal characteristics are simulated using the finite element method [FEM) to optimize heat sink dimensions and transition heat sink design. Through optimization, the heat sink volume is reduced by 83.3%, while heat dissipation efficiency is improved by18.2%. Under 60 A continuous-wave operation, the PC LD with the optimized heat dissipation structure achieves an output power of 48.2 W at 20°C with the thermal resistance of 1.17 K/W, and an output power of 54.5 W at 5°C with the maximum power conversion efficiency of 62.4%.

【Abstract】 Photonic crystal [PC) laser diodes [LDs) exhibit high power and narrow divergence angle output. Enhancing their thermal characteristics is critical for improving device performance and reliability. In this study, we develop a 3D heat dissipation model for 976 nm PC LDs packaged in conduction-cooled heat sink mounts [CS-mounts). The steady-state thermal characteristics are simulated using the finite element method [FEM) to optimize heat sink dimensions and transition heat sink design. Through optimization, the heat sink volume is reduced by 83.3%, while heat dissipation efficiency is improved by18.2%. Under 60 A continuous-wave operation, the PC LD with the optimized heat dissipation structure achieves an output power of 48.2 W at 20°C with the thermal resistance of 1.17 K/W, and an output power of 54.5 W at 5°C with the maximum power conversion efficiency of 62.4%.

【基金】 supported by the National Key R&D Program of China (Nos. 2021YFA1400604 and 2023YFB3610800);the Key R&D Program of Shandong Province (Nos. 2023ZLYS03and 2022CXGC020104)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2025年08期
  • 【分类号】TN31
  • 【下载频次】2
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