Electrooptic planar deflector switches with thin-film PLZT active elements

被引:25
作者
Glebov, AL [1 ]
Lee, MG
Huang, L
Aoki, S
Yokouchi, K
Ishii, M
Kato, M
机构
[1] Fujitsu Labs Amer Inc, Sunnyvale, CA 94085 USA
[2] Fujitsu Ltd, Kawasaki, Kanagawa 2118588, Japan
[3] Optoelect Ind & Technol Dev Assoc Tokyo, Tokyo 1120014, Japan
[4] Fujitsu Labs Ltd, Atsugi, Kanagawa 2430197, Japan
关键词
ferroelectric films; optical planar waveguides; optical switches; optoelectronic integrated circuits; photonic devices;
D O I
10.1109/JSTQE.2005.846515
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
First prototypes of electrooptic (EO) planar deflector switches (PDSs) are fabricated with hybrid integration on Si substrates. Planar optical modules, made in silica-on-silicon technology, consist of input and output (I/O) waveguide microlenses facing each other and slab waveguides in between. The modules interconnect the I/O fibers with laterally collimated light beams less than 400 pm in width at distances up to 100 mm with losses lower than 3 dB. Thin lead lanthanum zirconium titanate (PLZT) films with prism-shaped electrodes grown on SrTiO3 substrates form the deflector elements. The PLZT films are more than 10 mu m thick with EO coefficients about 40 pm/V. The deflector assembly technology provides chip vertical positioning accuracy better than 1 mu m. The deflector chips are attached to the optical substrates with thermo-compression flip-chip bonding. The optical power losses of the modules with test silica chips can be as low as 3.6 dB. However, the lowest module losses achieved with PLZT are about 10 dB. The channel-to-channel switching operations are demonstrated at about 40 V and switching times less than 500 ns.
引用
收藏
页码:422 / 430
页数:9
相关论文
共 24 条
[1]   EVALUATION OF THE PRISM COUPLER FOR MEASURING THE THICKNESS AND REFRACTIVE-INDEX OF DIELECTRIC FILMS ON SILICON SUBSTRATES [J].
ADAMS, AC ;
SCHINKE, DP ;
CAPIO, CD .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1979, 126 (09) :1539-1543
[2]   WAVE-GUIDE ELECTROOPTIC SWITCH ARRAYS [J].
ALFERNESS, RC .
IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 1988, 6 (07) :1117-1130
[3]   Applications of lithium niobate integrated optic in telecommunication systems [J].
Bosso, SS .
INTEGRATED OPTICS DEVICES III, 1999, 3620 :34-37
[4]   MEMS: The path to large optical crossconnects [J].
Chu, PB ;
Lee, SS ;
Park, S .
IEEE COMMUNICATIONS MAGAZINE, 2002, 40 (03) :80-87
[5]   Holographic optical switching: The "ROSES" demonstrator [J].
Crossland, WA ;
Manolis, IG ;
Redmond, MM ;
Tan, KL ;
Wilkinson, TD ;
Holmes, MJ ;
Parker, TR ;
Chu, HH ;
Croucher, J ;
Handerek, VA ;
Warr, ST ;
Robertson, B ;
Bonas, IG ;
Franklin, R ;
Stace, C ;
White, HJ ;
Woolley, RA ;
Henshall, G .
JOURNAL OF LIGHTWAVE TECHNOLOGY, 2000, 18 (12) :1845-1854
[6]   Polymer microphotonics [J].
Eldada, L .
NANO-AND MICRO-OPTICS FOR INFORMATION SYSTEMS, 2003, 5225 :49-60
[7]   Planar waveguide microlenses for nonblocking photonic switches and optical interconnects [J].
Glebov, AL ;
Huang, L ;
Lee, MG ;
Aoki, S ;
Yokouchi, K .
MICRO-OPTICS, VCSELS, AND PHOTONIC INTERCONNECTS, 2004, 5453 :73-82
[8]   Two-dimensional microlens arrays in silica-onsilicon planar lightwave circuit technology [J].
Glebov, AL ;
Huang, LD ;
Aoki, S ;
Lee, MG ;
Yokouchi, K .
JOURNAL OF MICROLITHOGRAPHY MICROFABRICATION AND MICROSYSTEMS, 2003, 2 (04) :309-318
[9]   Planar hybrid polymer-silica microlenses with tunable beamwidth and focal length [J].
Glebov, AL ;
Huang, LD ;
Aoki, S ;
Lee, M ;
Yokouchi, K .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2004, 16 (04) :1107-1109
[10]   Recent advances in large-scale silica-based thermo-optic switches [J].
Goh, T .
APOC 2001: ASIA-PACIFIC OPTICAL AND WIRELESS COMMUNICATIONS: OPTICAL SWITCHING AND OPTICAL INTERCONNECTION, 2001, 4582 :49-56