Senior Simulation Engineer (Optical & Photonics)

Ignite Human CapitalTemecula, CA
$180,000 - $220,000Onsite

About The Position

The Senior Simulation Engineer – Optical & Photonics is a highly technical engineering role responsible for the high-fidelity modeling, simulation, and virtual prototyping of advanced photonic integrated circuits (PICs). This individual will design and optimize high-performance III-V and Silicon Photonics devices, including lasers, modulators, photodetectors, and passive optical components. Working closely with device designers, fabrication teams, and an in-house foundry, this role serves as a critical bridge between theoretical modeling and physical device implementation. The ideal candidate brings deep expertise in computational photonics, semiconductor physics, multi-physics simulation, and the development of photonic products from concept through manufacturing.

Requirements

  • Deep expertise in Silicon Photonics, III-V photonics, photonic integrated circuits, and semiconductor device modeling
  • Expert-level proficiency with Ansys Lumerical, including FDTD, MODE, DEVICE, and INTERCONNECT
  • Experience with photonics simulation platforms such as Synopsys RSoft/OptSim and Zemax/Speos
  • Experience with RF and electromagnetic simulation tools such as Keysight ADS, Ansys HFSS, or CST Microwave Studio
  • Advanced proficiency in Python and/or MATLAB for simulation automation, modeling, and large-scale data analysis
  • Strong understanding of semiconductor physics, including bandgap engineering, carrier dynamics, recombination mechanisms, band structures, and quantum well design
  • Experience modeling optical, electrical, thermal, and RF interactions in high-performance photonic devices
  • Strong understanding of semiconductor fabrication and how epitaxy growth, etching profiles, and metallization affect optical and electrical device performance
  • Familiarity with fiber coupling, optical packaging, and Co-Packaged Optics (CPO)
  • Experience with DRC, LVS, process design rules, and tapeout processes
  • Experience using statistical analysis tools such as JMP or Minitab is preferred
  • Strong analytical and troubleshooting skills, particularly in identifying and resolving discrepancies between modeled and measured performance
  • Excellent technical communication skills with the ability to explain complex engineering trade-offs to technical teams, leadership, and customers
  • Proven ability to collaborate across device design, fabrication, characterization, and manufacturing teams
  • M.S. or Ph.D. in Physics, Electrical Engineering, Materials Science, or a related technical discipline with an emphasis on computational photonics
  • 10+ years of industrial experience in photonics simulation and design
  • Extensive hands-on experience with III-V and Silicon Photonics device modeling
  • Proven track record of bringing photonic or semiconductor products from concept and simulation through fabrication and manufacturing
  • Significant experience with active and passive photonic device simulation, multi-physics modeling, and model validation
  • Experience working directly with semiconductor fabrication or an in-house foundry environment strongly preferred
  • Demonstrated experience translating simulation results into manufacturable device designs

Nice To Haves

  • Experience using statistical analysis tools such as JMP or Minitab is preferred

Responsibilities

  • Design, model, and simulate advanced III-V and Silicon Photonics devices and photonic integrated circuits (PICs)
  • Develop high-fidelity models for active and passive components, including DFB/DBR lasers, SOAs, EAM/MZM modulators, UTC photodiodes, optical couplers, WDM devices, and 90-degree hybrids
  • Lead multi-physics simulations combining optical, electrical, and thermal models, including analysis of self-heating and other device-performance effects
  • Optimize RF performance for high-speed modulators and optical-electrical conversion efficiency
  • Optimize epitaxy layers, quantum well designs, optical modes, and impedance matching across heterogeneous material interfaces
  • Model and optimize III-V and Silicon heterogeneous integration for next-generation photonic devices
  • Partner directly with internal fabrication and device-design teams to translate simulation results into actionable device layouts
  • Support HPIC layouts, process design rules, DRC (Design Rule Check), and LVS (Layout Versus Schematic) activities to ensure tapeout accuracy
  • Execute virtual Design of Experiments (DOE) to predict device performance, reliability, and manufacturing behavior
  • Validate simulation results against internal laboratory characterization data and refine models and material parameters based on measured performance
  • Develop automated simulation and data-analysis workflows using Python and/or MATLAB
  • Analyze large technical datasets and use statistical methods to identify trends, optimize performance, and communicate results
  • Troubleshoot discrepancies between simulated and measured device performance and recommend design or process improvements
  • Present complex technical findings, design trade-offs, and recommendations to engineering teams, leadership, and customers

Benefits

  • Medical, dental, and vision coverage
  • 401(k)
  • Company-paid life insurance
  • Company-paid disability coverage
  • Paid holidays and vacation
  • Birthday leave
  • Gym membership discounts
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