Broadband MEMS-Tunable High-Index-Contrast Subwavelength Grating Long-Wavelength VCSEL

被引:44
|
作者
Chung, Il-Sug [1 ]
Iakovlev, Vladmir [2 ]
Sirbu, Alexei [3 ]
Mereuta, Alexandru [3 ]
Caliman, Andrei [3 ]
Kapon, Eli [3 ]
Mork, Jesper [1 ]
机构
[1] Tech Univ Denmark, Dept Photon Engn DTU Fotn, DK-2800 Lyngby, Denmark
[2] BeamExpress SA, CH-1015 Lausanne, Switzerland
[3] Ecole Polytech Fed Lausanne, Lab Phys Nanostruct, CH-1015 Lausanne, Switzerland
关键词
Microelectromechanical; sensor; sub-wavelength grating; vertical-cavity surface-emitting laser; PHOTONIC CRYSTAL; CAVITY; 10-GB/S; POWER;
D O I
10.1109/JQE.2010.2047494
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A widely-tunable single-mode 1.3 mu m vertical-cavity surface-emitting laser structure incorporating a microelectromechanical system-tunable high-index-contrast subwavelength grating (HCG) mirror is suggested and numerically investigated. A linear tuning range of 100 nm and a wavelength tuning efficiency of 0.203 are predicted. The large tuning range and efficiency are attributed to the incorporation of the tuning air gap as part of the optical cavity and to the use of a short cavity structure. The short cavity length can be achieved by employing a HCG design of which the reflection mechanism does not rely on resonant coupling. The absence of resonance coupling leads to a 0.59 lambda-thick penetration depth of the HCG and enables to use a 0.25 lambda-thick tuning air gap underneath the HCG. This considerably reduces the effective cavity length, leading to larger tuning range and efficiency. The basic properties of this new structure are analyzed, and shown to be explained by analytical expressions that are derived in the paper. In this context, the penetration depth of the HCG is introduced and shown to be an important characteristic length scale. Throughout the tuning wavelength range, strong single mode operation was maintained and uniform output power is expected.
引用
收藏
页码:1245 / 1253
页数:9
相关论文
共 50 条
  • [31] Continuously tunable long-wavelength MEMS-VCSEL with over 40-nm tuning range
    Riemenschneider, F
    Maute, M
    Halbritter, H
    Boehm, G
    Amann, MC
    Meissner, P
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2004, 16 (10) : 2212 - 2214
  • [32] Modeling of Long-Wavelength High Contrast Grating VCSELs and Comparison with Experiment
    Qiao, Pengfei
    Su, Guan-Lin
    Rao, Yi
    Chang-Hasnain, Connie J.
    Chuang, Shun Lien
    2013 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2013,
  • [33] Tunable Resonant-Cavity-Enhanced Photodetector with Double High-Index-Contrast Grating Mirrors
    Learkthanakhachon, Supannee
    Yvind, Kresten
    Chung, Il-Sug
    HIGH CONTRAST METASTRUCTURES II, 2013, 8633
  • [34] Transverse Mode Control in High-Contrast Subwavelength Grating VCSEL
    Zhou, Ye
    Huang, Michael C. Y.
    Chang-Hasnain, Connie J.
    2007 CONFERENCE ON LASERS & ELECTRO-OPTICS/QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (CLEO/QELS 2007), VOLS 1-5, 2007, : 713 - 714
  • [35] Suspended Si/air high contrast subwavelength gratings for long-wavelength infrared reflectors
    Foley, Justin M.
    Phillips, Jamie D.
    HIGH CONTRAST METASTRUCTURES II, 2013, 8633
  • [36] Influence of Subwavelength Grating Asymmetry on Long-Wavelength Infrared Transmittance Filters
    Barrow, Michael
    Scherr, Marty
    Phillips, Jamie
    IEEE PHOTONICS JOURNAL, 2018, 10 (06):
  • [37] High-Power Long-Wavelength VCSEL Arrays
    Hofmann, W.
    Goerblich, M.
    Ortsiefer, M.
    Boehm, G.
    Amann, M. -C.
    2008 IEEE 21ST INTERNATIONAL SEMICONDUCTOR LASER CONFERENCE, 2008, : 141 - +
  • [38] Gas temperature measurements using widely tunable long-wavelength VCSEL
    Lytkine, A.
    Lim, A.
    Jager, W.
    Tulip, J.
    APPLIED PHYSICS B-LASERS AND OPTICS, 2008, 90 (02): : 323 - 327
  • [39] Gas temperature measurements using widely tunable long-wavelength VCSEL
    A. Lytkine
    A. Lim
    W. Jäger
    J. Tulip
    Applied Physics B, 2008, 90 : 323 - 327
  • [40] Polarization-dependent coupling between a polarization-independent high-index-contrast subwavelength grating and waveguides
    Katayama, Takeo
    Ito, Jun
    Kawaguchi, Hitoshi
    APPLIED PHYSICS EXPRESS, 2016, 9 (07)