Room-temperature mid-infrared quantum well lasers on multi-functional metamorphic buffers

被引:18
|
作者
Jung, Daehwan [1 ]
Yu, Lan [2 ]
Dev, Sukrith [2 ]
Wasserman, Daniel [2 ]
Lee, Minjoo Larry [1 ,2 ]
机构
[1] Yale Univ, Dept Elect Engn, New Haven, CT 06511 USA
[2] Univ Illinois, Dept Elect & Comp Engn, Urbana, IL 61801 USA
基金
美国国家科学基金会;
关键词
CASCADE LASERS; DOT LASERS; PERFORMANCE; SILICON; POWER; BEAM; SI;
D O I
10.1063/1.4968560
中图分类号
O59 [应用物理学];
学科分类号
摘要
The modern commercial optoelectronic infrastructure rests on a foundation of only a few, select semiconductor materials, capable of serving as viable substrates for devices. Any new active device, to have any hope of moving past the laboratory setting, must demonstrate compatibility with these substrate materials. Across much of the electromagnetic spectrum, this simple fact has guided the development of lasers, photodetectors, and other optoelectronic devices. In this work, we propose and demonstrate the concept of a multi-functional metamorphic buffer (MFMB) layer that not only allows for growth of highly lattice-mismatched active regions on InP substrates but also serves as a bottom cladding layer for optical confinement in a laser waveguide. Using the MFMB concept in conjunction with a strain-balanced multiple quantum well active region, we demonstrate laser diodes operating at room temperature in the technologically vital, and currently underserved, 2.5-3.0 mu m wavelength range. Published by AIP Publishing.
引用
收藏
页数:5
相关论文
共 50 条
  • [21] Mid-infrared lasers on silicon operating close to room temperature
    Hongtao Lin
    Journal of Semiconductors, 2019, 40 (10) : 5
  • [22] Room-Temperature Mid-Infrared Emission from Faceted InAsSb Multi Quantum Wells Embedded in InAs Nanowires
    Alhodaib, Aiyeshah
    Noori, Yasir J.
    Carrington, Peter J.
    Sanchez, Ana M.
    Thompson, Michael D.
    Young, Robert J.
    Krier, Anthony
    Marshall, Andrew R. J.
    NANO LETTERS, 2018, 18 (01) : 235 - 240
  • [23] AlGaInSb/GaInSb multiple quantum well mid-infrared lasers
    Pease, EA
    Dawson, LR
    Gray, AL
    Lester, LF
    Gianardi, DM
    LEOS 2001: 14TH ANNUAL MEETING OF THE IEEE LASERS & ELECTRO-OPTICS SOCIETY, VOLS 1 AND 2, PROCEEDINGS, 2001, : 202 - 203
  • [24] Room-Temperature 15% Efficient Mid-Infrared HgTe Colloidal Quantum Dot Photodiodes
    Peterson, John C.
    Guyot-Sionnest, Philippe
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (15) : 19163 - 19169
  • [25] InSb Mid-Infrared Photon Detector for Room-Temperature Operation
    Ueno, Koichiro
    Camargo, Edson Gomes
    Katsumata, Takashi
    Goto, Hiromasa
    Kuze, Naohiro
    Kangawa, Yoshihiro
    Kakimoto, Koichi
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2013, 52 (09)
  • [26] Mid-infrared stimulated emission in HgCdTe/CdHgTe quantum well heterostructures at room temperature
    Fadeev, Mikhail A.
    Troshkin, Alexander O.
    Dubinov, Alexander A.
    Utochkin, Vladimir V.
    Razova, Anna A.
    Rumyantsev, Vladimir V.
    Aleshkin, Vladimir Ya
    Gavrilenko, Vladimir, I
    Mikhailov, Nikolay N.
    Dvoretsky, Sergey A.
    Morozov, Sergey, V
    OPTICAL ENGINEERING, 2021, 60 (08)
  • [27] MBE growth of room-temperature InAsSb mid-infrared detectors
    Marcadet, X
    Rakovska, A
    Prevot, I
    Glastre, G
    Vinter, B
    Berger, V
    JOURNAL OF CRYSTAL GROWTH, 2001, 227 : 609 - 613
  • [28] Room-temperature InAsSb pBin detectors for mid-infrared application
    Xie, Hao
    Lin, Hongyu
    Zhou, Ziji
    Wen, Zhengji
    Sun, Yan
    Hao, Jiaming
    Hu, Shuhong
    Dai, Ning
    INFRARED PHYSICS & TECHNOLOGY, 2023, 128
  • [29] Room-temperature InAsSb photovoltaic detectors for mid-infrared applications
    Shao, H.
    Li, W.
    Torfi, A.
    Moscicka, D.
    Wang, W. I.
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2006, 18 (13-16) : 1756 - 1758
  • [30] Room-temperature mid-infrared interband cascade vertical-cavity surface-emitting lasers
    Bewley, W. W.
    Canedy, C. L.
    Kim, C. S.
    Merritt, C. D.
    Warren, M. V.
    Vurgaftman, I.
    Meyer, J. R.
    Kim, M.
    APPLIED PHYSICS LETTERS, 2016, 109 (15)