Two-Dimensional Photonic Crystals Fabricated in Monolithic Single-Crystal Silicon

被引:21
|
作者
Hadzialic, Sanja [1 ,2 ]
Kim, Sora [3 ]
Sudbo, Aasmund Sveinung [1 ]
Solgaard, Olav [4 ]
机构
[1] Univ Oslo, Univ Grad Ctr, UniK, Fac Math & Nat Sci, N-2027 Kjeller, Norway
[2] Univ Oslo, Inst Phys, N-0316 Oslo, Norway
[3] Gen Elect Global Res Ctr, Schenectady, NY 12309 USA
[4] Stanford Univ, Dept Elect Engn, Stanford, CA 94305 USA
关键词
Broadband mirror; monolithic photonic crystals (PCs); photonic crystal (PC) devices; photonic crystal (PC) fabrication;
D O I
10.1109/LPT.2009.2036143
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 describe the fabrication of photonic crystals (PCs) in monolithic single-crystal Si on standard wafers without the need for silicon-on-insulator materials, and we demonstrate two types of PC devices based on this technology. The first is a PC mirror that exhibits broadband high reflectivity in the telecommunication wavelength band (> 90% from 1420 to 1520 nm). The second device shows large changes in reflectivity over narrow wavelength regions and has a sharp (3.5 nm wide) reflection minimum around 1550 nm, making the PC well suited for sensor applications. In both types of PC devices, guided resonances in the PC slab are exploited to obtain the desired reflection response. The PCs are fabricated in a process consisting of a series of oxidation and etch steps, with only one initial lithographic mask. The resulting PC slabs are monolithic structures, with the advantages of very thin and flat membranes with low internal stress, no temperature expansion coefficient mismatch, and compatibility with microelectromechanical systems and complementary metal-oxide-semiconductor processing.
引用
收藏
页码:67 / 69
页数:3
相关论文
共 50 条
  • [31] Two-dimensional tunable photonic crystals
    Figotin, A.
    Godin, Y. A.
    Vitebsky, I.
    Physical Review B: Condensed Matter, 57 (05):
  • [32] Refraction in two-dimensional photonic crystals
    Khromova, IA
    Melnikov, LA
    SARATOV FALL MEETING 2003: LASER PHYSICS AND PHOTONICS, SPECTROSCOPY, AND MOLECULAR MODELING IV, 2004, 5476 : 49 - 56
  • [33] Two-dimensional tunable photonic crystals
    Figotin, A
    Godin, YA
    Vitebsky, I
    PHYSICAL REVIEW B, 1998, 57 (05): : 2841 - 2848
  • [34] Three dimensional silicon photonic crystals fabricated by two photon phase mask lithography
    Shir, D.
    Nelson, E. C.
    Chen, Y. C.
    Brzezinski, A.
    Liao, H.
    Braun, P. V.
    Wiltzius, P.
    Bogart, K. H. A.
    Rogers, J. A.
    APPLIED PHYSICS LETTERS, 2009, 94 (01)
  • [35] Topological structural transformation of a two-dimensional coordination polymer via single-crystal to single-crystal photoreaction
    Li, Ni-Ya
    Guo, Xin-Yu
    Liu, Lei-Lei
    Ma, Jian
    Liu, Dong
    DALTON TRANSACTIONS, 2022, 51 (45) : 17235 - 17240
  • [36] Two-dimensional silicon nitride photonic crystal band gap characteristics
    Chen, Shou-xiang
    Yang, Xiu-lun
    Meng, Xiang-feng
    Wang, Yu-rong
    Wang, Lin-hui
    Dong, Guo-yan
    PROGRESS IN FUNCTIONAL MATERIALS, 2013, 538 : 201 - 204
  • [37] Two-dimensional photonic crystal bandedge resonance for perovskite laser on silicon
    Liu, Zhishuang
    Sun, Mingfei
    Ma, Qingyan
    Wang, Yufei
    Qu, Hongwei
    Zheng, Wanhua
    Wang, Zhijie
    NANOPHOTONICS AND MICRO/NANO OPTICS IV, 2018, 10823
  • [38] Silicon-Carbide-Based Two-Dimensional Photonic Crystal Nanocavities
    Yamada, Shota
    Song, Bong-Shik
    Asano, Takashi
    Noda, Susumu
    2010 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO) AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (QELS), 2010,
  • [39] Fabrication and characterization of two-dimensional photonic crystal on silicon by efficient methods
    Xu, Xingsheng
    Wang, Chunxia
    Li, Fang
    Xiong, Guiguang
    Liu, Yuliang
    Chen, Hongda
    2006 3RD IEEE INTERNATIONAL CONFERENCE ON GROUP IV PHOTONICS, 2006, : 69 - +
  • [40] TWO-DIMENSIONAL CHEMICAL-COMPOUNDS ON SINGLE-CRYSTAL SURFACES
    UEBING, C
    VIEFHAUS, H
    GRABKE, HJ
    BERICHTE DER BUNSEN-GESELLSCHAFT-PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1989, 93 (11): : 1363 - 1367