Multiphysics Design and Simulation Methodology for Dense WDM Silicon Photonics

被引:0
|
作者
Youn, Jinsung [1 ]
Ramini, Luca [1 ]
Lu, Zeqin [2 ]
Alam, Ahsan [2 ]
Pond, James [2 ]
Fiorentino, Marco [1 ]
Beausoleil, Raymond G. [1 ]
机构
[1] Hewlett Packard Enterprise, Hewlett Packard Labs, Milpitas, CA 95035 USA
[2] Ansys, Waterloo, ON, Canada
关键词
silicon photonics (SiPh); electronics-photonics co-simulation; multiphysics simulation workflows;
D O I
10.23919/DATE56975.2023.10137107
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
We present a novel design methodology covering multiphysics simulation workflows for microring-based dense wavelength division multiplexing (DWDM) Silicon Photonics (SiPh) circuits used for high-performance computing systems and data centers. The main workflow is an electronics-photonics co-simulation comprising various optical devices from a SiPh process design kit (PDK), electronic circuits designed with a commercial CMOS foundry's PDK, and channel S-parameter models, such as interposers and packages, generated by using a full-wave electromagnetic (EM) solver. With the co-simulation, electrical and optical as well as electro-optical behaviors can be analyzed at the same time because best-in-class electronics and photonic integrated circuit simulators interact with each other. As a result, not only optical spectrum and eye diagrams but also electrical eye diagrams can be evaluated on the same simulation platform. In addition, the proposed methodology includes a statistical- and thermal-aware photonic circuit simulation workflow to evaluate process and temperature variations as well as estimate the required thermal tuning power as those non-idealities can lead to microring's resonance wavelengths shifting. For this, thermal simulation is conducted with a 3D EM model which is also used for such signal and power integrity analysis as a channel link simulation and IR drop. Also, photonic circuit simulations are performed where a design exploration and optimization of such microring's design parameters as Q-factor, and bias voltages are required to select the most promising designs, for example, to satisfy a specific bit-error rate. With the proposed design methodology having those multiphysics simulation workflows, DWDM SiPh can be fully optimized to have reliable system performance.
引用
收藏
页数:2
相关论文
共 50 条
  • [31] Advances in dense WDM push diode laser design
    Zankowsky, D
    LASER FOCUS WORLD, 1997, 33 (08): : 167 - &
  • [32] MULTIPHYSICS SIMULATION ENHANCES ELECTRONICS SYSTEM DESIGN
    Demler, Mike
    EDN, 2010, 55 (24) : 34 - +
  • [33] Wavelength Locking of Silicon Photonics Multiplexer for DML-Based WDM Transmitter
    Grillanda, Stefano
    Ji, Ruiqiang
    Morichetti, Francesco
    Carminati, Marco
    Ferrari, Giorgio
    Guglielmi, Emanuele
    Peserico, Nicola
    Annoni, Andrea
    Dede, Alberto
    Nicolato, Danilo
    Vannucci, Antonello
    Klitis, Charalambos
    Holmes, Barry
    Sorel, Marc
    Fu, Shengmeng
    Man, Jiangwei
    Zeng, Li
    Sampietro, Marco
    Melloni, Andrea
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2017, 35 (04) : 607 - 614
  • [34] Co-design of electronics and photonics components for Silicon Photonics transmitters
    Li, Ke
    Thomson, D. J.
    Liu, Shenghao
    Meng, Fanfan
    Shakoor, Abdul
    Khokhar, Ali
    Cao, Wei
    Zhang, Weiwei
    Wilson, Peter
    Reed, G. T.
    2018 EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION (ECOC), 2018,
  • [35] Scalable 3D dense integration of photonics on bulk silicon
    Sherwood-Droz, Nicolas
    Lipson, Michal
    OPTICS EXPRESS, 2011, 19 (18): : 17758 - 17765
  • [36] DESIGN AND SIMULATION OF MECHANICAL EQUIPMENT BY DESIGN TOOLS AND MULTIPHYSICS PLATFORMS
    Tinnirello, Alicia
    Gago, Eduardo
    Valentini, Mariano
    ICERI2015: 8TH INTERNATIONAL CONFERENCE OF EDUCATION, RESEARCH AND INNOVATION, 2015, : 789 - 797
  • [37] Adiabatically Bent Waveguides on Silicon Nitride Photonics for Compact and Dense Footprints
    Song, Jeong Hwan
    Kongnyuy, Tangla D.
    Stassen, Andim
    Mukund, Vignesh
    Rottenberg, Xavier
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2016, 28 (20) : 2164 - 2167
  • [38] Multiphysics design methodology of permanent-magnet synchronous motors
    Makni, Z.
    Besbes, M.
    Marchand, C.
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2007, 56 (04) : 1524 - 1530
  • [39] System-by-Design Methodology for Multiscale and Multiphysics Synthesis Problems
    Massa, A.
    Oliveri, G.
    Salucci, M.
    Rocca, P.
    2016 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM, 2016, : 629 - 630
  • [40] Integral Methodology for the Multiphysics Design of an Automotive Eddy Current Damper
    Jamolov, Umid
    Maizza, Giovanni
    ENERGIES, 2022, 15 (03)