2022
DOI: 10.1038/s41467-022-33528-x
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Chip-scale high-peak-power semiconductor/solid-state vertically integrated laser

Abstract: Compact lasers capable of producing kilowatt class peak power are highly desirable for applications in various fields, including laser remote sensing, laser micromachining, and biomedical photonics. In this paper, we propose a high-peak-power chip-scale semiconductor/solid-state vertically integrated laser in which two cavities are optically coupled at the solid-state laser gain medium. The first cavity is for the intra-pumping of ytterbium-doped yttrium aluminum garnet (Yb:YAG) with an electrically driven ind… Show more

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Cited by 3 publications
(1 citation statement)
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“…Recently, several teams have started to develop the integration of PCSELs and LiDAR-related modules. Y. H. Hong et al first switching speed -fully integrated GaN driver [81] GaN HEMT driving circuit [97] hetero integration [65] circuit design [83] high power triple junction laser [68] tapered ridge waveguide lasers with highly asymmetric design [71] tapered diode laser amplifiers [72] multi-junction VCSEL [64] flip-chip design [73] shallow surface gratings [74][75][76] driver and circuit design [82] square-lattice structure [ 88,89,93] MOCVD regrowth [92] double-lattice structure [ 66,94,95] eye safety long wavelength [70][71][72] long-wavelength [78][79][80] buried airhole/InP photonic-crystal (PC) layer [96] chip on scale -integration [100][101][102] A composite photonic crystal structure resulting from combining both square and rectangular lattices [90] CMOS-fabricated SPAD array [98] stability -laser design with high-temperature operation [77] The photonic crystal exhibiting a flat band structure, accompanied by an additional feedback mechanism [ 103] power consumption -circuit design [83] The photonic crystal exhibiting a flat band structure, accompanied by an additional feedback mechanism [ 103] suggested a framework for influencing the light emission performance of PCSELs using a GaN high electron mobility transistor (HEMT) driving circuit. For LiDAR sensing, a quicker pulse repetition frequency paired with a narrower pulse wid...…”
Section: Photonic Crystal Surface Emitting Lasermentioning
confidence: 99%
“…Recently, several teams have started to develop the integration of PCSELs and LiDAR-related modules. Y. H. Hong et al first switching speed -fully integrated GaN driver [81] GaN HEMT driving circuit [97] hetero integration [65] circuit design [83] high power triple junction laser [68] tapered ridge waveguide lasers with highly asymmetric design [71] tapered diode laser amplifiers [72] multi-junction VCSEL [64] flip-chip design [73] shallow surface gratings [74][75][76] driver and circuit design [82] square-lattice structure [ 88,89,93] MOCVD regrowth [92] double-lattice structure [ 66,94,95] eye safety long wavelength [70][71][72] long-wavelength [78][79][80] buried airhole/InP photonic-crystal (PC) layer [96] chip on scale -integration [100][101][102] A composite photonic crystal structure resulting from combining both square and rectangular lattices [90] CMOS-fabricated SPAD array [98] stability -laser design with high-temperature operation [77] The photonic crystal exhibiting a flat band structure, accompanied by an additional feedback mechanism [ 103] power consumption -circuit design [83] The photonic crystal exhibiting a flat band structure, accompanied by an additional feedback mechanism [ 103] suggested a framework for influencing the light emission performance of PCSELs using a GaN high electron mobility transistor (HEMT) driving circuit. For LiDAR sensing, a quicker pulse repetition frequency paired with a narrower pulse wid...…”
Section: Photonic Crystal Surface Emitting Lasermentioning
confidence: 99%