Ultra-high on-chip optical gain in erbium-based hybrid slot waveguides

被引:127
|
作者
Ronn, John [1 ]
Zhang, Weiwei [2 ,3 ]
Autere, Anton [1 ]
Leroux, Xavier [2 ]
Pakarinen, Lasse [1 ]
Alonso-Ramos, Carlos [2 ]
Saynatjoki, Antti [1 ,4 ]
Lipsanen, Harri [1 ]
Vivien, Laurent [2 ]
Cassan, Eric [2 ]
Sun, Zhipei [1 ,5 ]
机构
[1] Aalto Univ, Dept Elect & Nanoengn, Tietotie 3, FI-00076 Espoo, Finland
[2] Univ Paris Saclay, Univ Paris Sud, CNRS, UMR 9001,Ctr Nanosci & Nanotechnol, F-91405 Orsay, France
[3] Univ Southampton, Optoelect Res Ctr, Univ Rd, Southampton SO17 1BJ, Hants, England
[4] Univ Eastern Finland, Inst Photon, FI-80101 Joensuu, Finland
[5] Aalto Univ, Dept Appl Phys, QTF Ctr Excellence, FI-00076 Espoo, Finland
基金
芬兰科学院;
关键词
SILICON; AMPLIFIERS; PHOTONICS; LASERS; STRIP; NM;
D O I
10.1038/s41467-019-08369-w
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Efficient and reliable on-chip optical amplifiers and light sources would enable versatile integration of various active functionalities on the silicon platform. Although lasing on silicon has been demonstrated with semiconductors by using methods such as wafer bonding or molecular beam epitaxy, cost-effective mass production methods for CMOS-compatible active devices are still lacking. Here, we report ultra-high on-chip optical gain in erbium-based hybrid slot waveguides with a monolithic, CMOS-compatible and scalable atomic-layer deposition process. The unique layer-by-layer nature of atomic-layer deposition enables atomic scale engineering of the gain layer properties and straightforward integration with silicon integrated waveguides. We demonstrate up to 20.1 +/- 7.31 dB/cm and at least 52.4 +/- 13.8 dB/cm net modal and material gain per unit length, respectively, the highest performance achieved from erbium-based planar waveguides integrated on silicon. Our results show significant advances towards efficient on-chip amplification, opening a route to large-scale integration of various active functionalities on silicon.
引用
收藏
页数:9
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