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First demonstration of orange-yellow light emitter devices in InGaP/InAlGaP laser structure using strain-induced quantum well intermixing technique

机译:InGaP / InAlGaP激光器结构中橙黄色发光器器件的首次演示,采用应变诱导量子阱混合技术

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摘要

In this paper, a novel strain-induced quantum well intermixing (QWI) technique is employed on InGaP/InAlGaP material system to promote interdiffusion via application of a thick-dielectric encapsulant layer, in conjunction with cycle annealing at elevated temperature. Broad area devices fabricated from this novel cost-effective QWI technique lased at room-temperature at a wavelength as short as 608nm with a total output power of ~46mW. This is the shortest- wavelength electrically pumped visible semiconductor laser, and the first report of lasing action yet reported from post- growth interdiffused process. Furthermore, we also demonstrate the first yellow superluminescent diode (SLD) at a wavelength of 583nm with a total two-facet output power of ~4.5mW - the highest optical power ever reported at this wavelength in this material system. The demonstration of the yellow SLD without complicated multiquantum barriers to suppress the carrier overflow will have a great impact in realizing the yellow laser diode. © (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:在本文中,在InGaP / InAlGaP材料系统上采用了一种新颖的应变诱导量子阱混合(QWI)技术,以通过应用厚介电密封剂层以及在高温下进行循环退火来促进相互扩散。由这种新颖的具有成本效益的QWI技术制造的广域器件在室温下以短至608nm的波长发射,总输出功率约为46mW。这是最短波长的电泵浦可见光半导体激光器,也是生长后互扩散过程尚未报道的第一个激射作用报告。此外,我们还演示了第一个黄色超发光二极管(SLD),其波长为583nm,两面总输出功率约为4.5mW,这是该材料系统中在该波长下报告的最高光功率。没有复杂的多量子势垒来抑制载流子溢出的黄色SLD的演示将对实现黄色激光二极管产生很大的影响。 ©(2016)版权,光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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