Design and fabrication of indium phosphide air-bridge waveguides with MEMS functionality

被引:0
|
作者
Ng, Wing H. [1 ]
Podoliak, Nina [2 ]
Horak, Peter [2 ]
Wu, Jiang [1 ]
Liu, Huiyun [1 ]
Stewart, William J. [2 ]
Kenyon, Anthony J. [1 ]
机构
[1] UCL, Dept Elect & Elect Engn, London WC1E 7JE, England
[2] Univ Southampton, Optoelect Res Ctr, Southampton SO17 1BJ, Hants, England
关键词
Optical buffer; waveguide; III-V semiconductors; MEMS; MOEMS; optical delay; actuation; MICROFLUIDICS;
D O I
10.1117/12.2178612
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
We present the design and fabrication of a dual air-bridge waveguide structure integrated with MEMS functionality. The structure is designed to function as a tunable optical buffer for telecommunication application. The optical buffer structure is based on two parallel waveguides made of high refractive index material with sub-wavelength dimensions. They are suspended in air, and are separated by a sub-micron air gap. Due to the fact that the size of the waveguides is much smaller than the wavelength of light that propagates in the structure, a significant fraction of the optical mode is in the air gap between the waveguides. By changing the size of the air gap using MEMS techniques, we can vary this fraction and hence the effective refractive index of the waveguide structure, thus generating tunable optical delay. The optical buffer structure was grown on an InP substrate by molecular beam epitaxy, and the device layer was made of InGaP. An InGaAs layer was sandwiched between the device layer and the substrate to serve as a sacrificial layer. The sub-micron waveguides, their supports in the form of side pillars with tapered shapes in order to minimize optical losses, and the MEMS structures were patterned using electron beam lithography and plasma etching. Electrodes were integrated into the structure to provide electrostatic actuation. After the sample patterning, the waveguide structure was released using HF etch. Our simulations predict that by varying the waveguide separation from 50 nm to 500 nm, we could achieve a change in propagation delay by a factor of two.
引用
收藏
页数:6
相关论文
共 35 条
  • [1] Design and fabrication of air-bridge CPW using porous silicon and MEMS technology
    Kim, YM
    Lee, JH
    Kong, SH
    Lee, KM
    [J]. SENSORS AND MATERIALS, 2005, 17 (05) : 289 - 298
  • [2] Design and Fabrication of Suspended Indium Phosphide Waveguides for MEMS-Actuated Optical Buffering
    Ng, Wing H.
    Podoliak, Nina
    Horak, Peter
    Wu, Jiang
    Liu, Huiyun
    Stewart, William J.
    Kenyon, Anthony J.
    [J]. IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2015, 21 (04) : 240 - 246
  • [3] Fabrication of Al air-bridge on coplanar waveguide
    金震川
    吴海腾
    于海峰
    于扬
    [J]. Chinese Physics B, 2018, 27 (10) : 220 - 222
  • [4] A RF-MEMS switchable CPW air-bridge
    Contreras, Adrian
    Casals-Terre, Jasmina
    Pradell, Lluis
    Giacomozzi, Flavio
    Colpo, Sabrina
    Iannacci, Jacopo
    [J]. 2012 7TH EUROPEAN MICROWAVE INTEGRATED CIRCUITS CONFERENCE (EUMIC), 2012, : 441 - 444
  • [5] Fabrication of Al air-bridge on coplanar waveguide
    Jin, Zhen-Chuan
    Wu, Hai-Teng
    Yu, Hai-Feng
    Yu, Yang
    [J]. CHINESE PHYSICS B, 2018, 27 (10)
  • [6] Fabrication of a transmission line on a thick silicon dioxide air-bridge using a complex oxidation process and MEMS technology
    Park, JY
    Lee, JH
    Sim, JH
    Cho, CS
    Bae, YH
    [J]. JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2002, 41 (01) : 160 - 163
  • [7] 3D polymer based air-bridge waveguides for on chip applications
    Goraus, Matej
    Pudis, Dusan
    Martincek, Ivan
    Urbancova, Petra
    [J]. 21ST CZECH-POLISH-SLOVAK OPTICAL CONFERENCE ON WAVE AND QUANTUM ASPECTS OF CONTEMPORARY OPTICS, 2018, 10976
  • [8] Fabrication of air-bridge Schottky diodes on germanium for high speed IR detectors
    Notargiacomo, A.
    Bagni, R.
    Giovine, E.
    Foglietti, V.
    Carta, S.
    Pea, M.
    Di Gaspare, L.
    Capellini, G.
    Evangelisti, F.
    [J]. MICROELECTRONIC ENGINEERING, 2011, 88 (08) : 2714 - 2716
  • [9] AIR-BRIDGE CONTACT FABRICATION FOR IN-PLANE ACTIVE PHOTONIC CRYSTAL DEVICES
    Kaspar, P.
    Kappeler, R.
    Friedli, P.
    Jaeckel, H.
    [J]. 2010 22ND INTERNATIONAL CONFERENCE ON INDIUM PHOSPHIDE AND RELATED MATERIALS (IPRM), 2010,
  • [10] Simulation and fabrication of slow light suspended air-bridge AlGaAs photonic crystal waveguide
    Vyas, Kaustubh
    Cheriton, Ross
    Liu, David
    Ahmed, Hassan
    Schulz, Sebastian
    Dolgaleva, Ksenia
    [J]. INTEGRATED OPTICS: DEVICES, MATERIALS, AND TECHNOLOGIES XXVI, 2022, 12004