Highly efficient dual-level grating couplers for silicon nitride photonics

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作者
Valerio Vitali
Cosimo Lacava
Thalía Domínguez Bucio
Frederic Y. Gardes
Periklis Petropoulos
机构
[1] University of Southampton,Optoelectronics Research Centre, Highfield Campus
[2] University of Pavia,Electrical, Computer and Biomedical Engineering Department
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Scientific Reports | / 12卷
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摘要
We propose and numerically demonstrate a versatile strategy that allows designing highly efficient dual-level grating couplers in different silicon nitride-based photonic platforms. The proposed technique, which can generally be applied to an arbitrary silicon nitride film thickness, is based on the simultaneous optimization of two grating coupler levels to obtain high directionality and grating-fibre mode matching at the same time. This is achieved thanks to the use of two different linear apodizations, with opposite signs, applied to the two grating levels, whose design parameters are determined by using a particle swarm optimization method. Numerical simulations were carried out considering different silicon nitride platforms with 150, 300, 400 and 500 nm thicknesses and initially employing silicon as the material for the top level grating coupler. The use of Si-rich silicon nitride with a refractive index in the range 2.7–3.3 for the top layer material enabled to obtain similar performance (coupling efficiency exceeding − 0.45 dB for the 400 nm thick silicon nitride platform) with relaxed fabrication tolerances. To the best of our knowledge, these numerical results represent the best performance ever reported in the literature for silicon nitride grating couplers without the use of any back-reflector.
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  • [1] Sackey I(2017)1.024 tb/s wavelength conversion in a silicon waveguide with reverse-biased pin junction Opt. Express 25 21229-21240
  • [2] Long Y(2016)All-optical wavelength conversion and signal regeneration of PAM-4 signal using a silicon waveguide Opt. Express 24 7158-7167
  • [3] Wang A(2013)Silicon-on-insulator integrated source of polarization-entangled photons Opt. Lett. 38 1960-1962
  • [4] Zhou L(2015)Design procedure and fabrication of reproducible silicon Vernier devices for high-performance refractive index sensing Sensors 15 13548-13567
  • [5] Wang J(2017)Recent advances and progress in photonic crystal-based gas sensors J. Phys. D Appl. Phys. 50 1700237-A96
  • [6] Olislager L(2018)Silicon photonics circuit design: Methods, tools and challenges Laser Photonics Rev. 12 A82-207
  • [7] Troia B(2017)Nonlinear silicon photonics J. Opt. 19 4227-3881
  • [8] Goyal AK(2022)Silicon nitride passive and active photonic integrated circuits: Trends and prospects Photonics Res. 10 189-10947
  • [9] Dutta HS(2022)A review of capabilities and scope for hybrid integration offered by silicon-nitride-based photonic integrated circuits Sensors 22 3878-25
  • [10] Pal S(2015)Triplex: A versatile dielectric photonic platform Adv. Opt. Technol. 4 10938-2523