In-chip microstructures and photonic devices fabricated by nonlinear laser lithography deep inside silicon

被引:129
作者
Tokel, Onur [1 ]
Turnali, Ahmet [2 ]
Makey, Ghaith [1 ]
Elahi, Parviz [1 ]
Colakoglu, Tahir [3 ]
Ergecen, Emre [4 ]
Yavuz, Ozgun [2 ]
Hubner, Rene [5 ]
Borra, Mona Zolfaghari [3 ,6 ]
Pavlov, Ihor [1 ]
Bek, Alpan [3 ,6 ,7 ]
Turan, Rasit [3 ,6 ,7 ]
Kesim, Denizhan Koray [2 ]
Tozburun, Serhat [8 ,9 ]
Ilday, Serim [1 ]
Ilday, F. Omer [1 ,2 ,10 ,11 ]
机构
[1] Bilkent Univ, Dept Phys, TR-06800 Ankara, Turkey
[2] Bilkent Univ, Dept Elect & Elect Engn, TR-06800 Ankara, Turkey
[3] Middle East Tech Univ, Ctr Solar Energy Res & Applicat, TR-06800 Ankara, Turkey
[4] MIT, Dept Elect Engn & Comp Sci, Cambridge, MA 02139 USA
[5] Helmholtz Zentrum Dresden Rossendorf, Inst Ion Beam Phys & Mat Res, Bautzner Landstr 400, D-01328 Dresden, Germany
[6] Middle East Tech Univ, Micro & Nanotechnol Grad Program, TR-06800 Ankara, Turkey
[7] Middle East Tech Univ, Dept Phys, TR-06800 Ankara, Turkey
[8] Harvard Med Sch, Boston, MA 02115 USA
[9] Izmir Int Biomed & Genome Inst, TR-35340 Izmir, Turkey
[10] Bilkent Univ, UNAM Natl Nanotechnol Res Ctr, TR-06800 Ankara, Turkey
[11] Bilkent Univ, Inst Mat Sci & Nanotechnol, TR-06800 Ankara, Turkey
基金
欧洲研究理事会;
关键词
PULSES; HOLOGRAMS; OPTICS;
D O I
10.1038/s41566-017-0004-4
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Silicon is an excellent material for microelectronics and integrated photonics(1-3), with untapped potential for mid-infrared optics(4). Despite broad recognition of the importance of the third dimension(5,6), current lithography methods do not allow the fabrication of photonic devices and functional microelements directly inside silicon chips. Even relatively simple curved geometries cannot be realized with techniques like reactive ion etching. Embedded optical elements(7), electronic devices and better electronic-photonic integration are lacking(8). Here, we demonstrate laser-based fabrication of complex 3D structures deep inside silicon using 1-mu m-sized dots and rod-like structures of adjustable length as basic building blocks. The laser-modified Si has an optical index different to that in unmodified parts, enabling the creation of numerous photonic devices. Optionally, these parts can be chemically etched to produce desired 3D shapes. We exemplify a plethora of subsurface-that is, 'in-chip'-microstructures for microfluidic cooling of chips, vias, micro-electromechanical systems, photovoltaic applications and photonic devices that match or surpass corresponding state-of-the-art device performances.
引用
收藏
页码:639 / +
页数:8
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