Ultra-sensitive refractive index sensor using CMOS plasmonic transducers on silicon photonic interferometric platform

被引:7
|
作者
Manolis, A. [1 ]
Chatzianagnostou, E. [1 ]
Dabos, G. [1 ]
Ketzaki, D. [1 ]
Chmielak, B. [2 ]
Giesecke, A. L. [2 ]
Porschatis, C. [2 ]
Cegielski, P. J. [2 ]
Suckow, S. [2 ]
Markey, L. [3 ]
Weeber, J-C [3 ]
Dereux, A. [3 ]
Schrittwieser, S. [4 ]
Heer, R. [4 ]
Pleros, N. [1 ]
Tsiokos, D. [1 ,5 ]
机构
[1] Aristotle Univ Thessaloniki, Ctr Interdisciplinary Res & Innovat, Dept Informat, 10th Km Thessalonikis Thermis Av, Thessaloniki 57001, Greece
[2] AMO GmbH, Adv Microelect Ctr Aachen AMICA, Otto Blumenthal Str 25, D-52074 Aachen, Germany
[3] Univ Bourgogne, Lab Interdisciplinaire Carnot Bourgogne, UMR 6303, CNRS, Dijon, France
[4] AIT Austrian Inst Technol, Mol Diagnost, A-1220 Vienna, Austria
[5] Bialoom Ltd, 72,28th Octovriou Ave,Off 301, CY-2414 Nicosia, Cyprus
基金
欧盟地平线“2020”;
关键词
MACH-ZEHNDER INTERFEROMETER; RING-RESONATOR; WAVE-GUIDES; ALUMINUM; INTEGRATION; RESONANCES;
D O I
10.1364/OE.383435
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Optical refractive-index sensors exploiting selective co-integration of plasmonics with silicon photonics has emerged as an attractive technology for biosensing applications that can unleash unprecedented performance breakthroughs that reaps the benefits of both technologies. However, towards this direction, a major challenge remains their integration using exclusively CMOS-compatible materials. In this context, herein, we demonstrate, for the first time to our knowledge, a CMOS-compatible plasmo-photonic Mach-Zehnder-interferometer (MZI) based on aluminum and Si3N4 waveguides, exhibiting record-high bulk sensitivity of 4764 nm/RIU with clear potential to scale up the bulk sensitivity values by properly engineering the design parameters of the MZI. The proposed sensor is composed of Si3N4 waveguides butt-coupled with an aluminum stripe in one branch to realize the sensing transducer. The reference arm is built by Si3N4 waveguides, incorporating a thermo-optic phase shifter followed by an MZI-based variable optical attenuation stage to maximize extinction ratio up to 38 dB, hence optimizing the overall sensing performance. The proposed sensor exhibits the highest bulk sensitivity among all plasmo-photonic counterparts, while complying with CMOS manufacturing standards, enabling volume manufacturing. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:20992 / 21001
页数:10
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