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复合金属衬底上薄膜垂直腔面发射激光器性能的研究。

Study on the performance of thin-film VCSELs on composite metal substrate.

作者信息

Lee Sanchez William Anderson, Sinha Shreekant, Wang Po-Yu, Horng Ray-Hua

机构信息

Institute of Electronics, Yang Ming Chiao Tung University, Hsinchu, 30010, China.

出版信息

Front Optoelectron. 2023 Nov 8;16(1):32. doi: 10.1007/s12200-023-00086-z.

Abstract

Thin film p-side up vertical-cavity surface-emitting lasers (VCSELs) with 940 nm wavelength on a composite metal (Copper/Invar/Copper; CIC) substrate has been demonstrated by twice-bonding transfer and substrate removing techniques. The CIC substrate is a sandwich structure with a 10 µm thick Copper (Cu) layer/30 µm thick Invar layer/10 µm thick Cu layer. The Invar layer was composed of Iron (Fe) and Nickel (Ni) with a proportion of 70:30. The thermal expansion coefficient of the composite CIC metal can match that of the GaAs substrate. It results that the VCSEL layers can be successfully transferred to CIC metal substrate without cracking. At 1 mA current, the top-emitting VCSEL/GaAs and thin-film VCSEL/CIC had a voltage of 1.39 and 1.37 V, respectively. The optical output powers of VCSEL/GaAs and VCSEL/CIC were 21.91 and 24.40 mW, respectively. The 50 µm thick CIC substrate can play a good heat dissipation function, which results in improving the electrical and optical characteristics of thin film VCSELs/CIC. The VCSEL/CIC exhibited a superior thermal management capability as compared with VCSEL/GaAs. The obtained data suggested that VCSELs on a composite metal substrate not only affected significantly the characteristics of thin film VCSEL, but also improved considerably the device thermal performance.

摘要

通过二次键合转移和衬底去除技术,已成功制备出基于复合金属(铜/殷钢/铜;CIC)衬底、波长为940 nm的薄膜p面朝上垂直腔面发射激光器(VCSEL)。CIC衬底为三明治结构,由10 µm厚的铜(Cu)层/30 µm厚的殷钢层/10 µm厚的Cu层组成。殷钢层由铁(Fe)和镍(Ni)按70:30的比例组成。复合CIC金属的热膨胀系数可与GaAs衬底相匹配。这使得VCSEL层能够成功转移到CIC金属衬底上而不发生开裂。在1 mA电流下,顶部发射的VCSEL/GaAs和薄膜VCSEL/CIC的电压分别为1.39 V和1.37 V。VCSEL/GaAs和VCSEL/CIC的光输出功率分别为21.91 mW和24.40 mW。50 µm厚的CIC衬底具有良好的散热功能,从而改善了薄膜VCSEL/CIC的电学和光学特性。与VCSEL/GaAs相比,VCSEL/CIC表现出卓越的热管理能力。所得数据表明,基于复合金属衬底的VCSEL不仅显著影响薄膜VCSEL的特性,而且还大幅提高了器件的热性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6057/10630174/052755a93230/12200_2023_86_Fig1_HTML.jpg

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