Jessica Claire
  • Montgomery Street, San Francisco, CA 94105
  • Home: (555) 432-1000
  • Cell:

Team-oriented, creative Microwave & Photonics Engineer with over five years experience in RF communication and electronic system industry. Focused on electromagnetic theory, numerical simulations with emphasis on metamaterials. Result-oriented, High-speed and Eager-to-learn in new challenging situations.



  • Metamaterial physics and properties
  • Waveguides
  • Modal / Dispersion analysis
  • Photonic Crystals
  • Numerical analysis (FDTD, FEM, etc.)
  • Nonlinear phenomena


  • RF System design
  • Antenna design
  • Measurements: Network / Spectrum Analyzer, Osc., SGs, etc.
  • RF model, Test and Verification


  • MATLAB (expert)
  • Maxwell / HFSS
  • MPB / MEEP
  • ADS / Zemax / Code Composer Studio
  • Programming: Pascal, C, Python


  • Teamwork
  • Great communication skills
  • Scheduling Programs (MS-Project)
  • Project Management
  • Strong presentation skills
  • Shown Self-Phase-Modulation (SPM), red-shifts and blue-shifts on pulse propagated in nonlinear metamaterial bulk medium (FDTD-Matlab); proceeding of META08 & NATO ARW: 2008, Morocco
  • Proposed master thesis on metamaterial physics and applications (including: comprehensive literature review / waveguides dispersion analysis / nonlinear analysis)
Professional Experience
Development Engineer, 11/2012 to Current
Emd MilliporeCleveland, OH,
  • Designed and simulated many-modes SOI optical waveguide; Achieved great modal delay difference of more than 100s of ps/cm
  • Engineered dispersion in photonic crystal waveguide structure; Achieved outstanding group delay of near 100 ps/mm with high GVD
  • Investigated the using metamaterial media for (time-stretch) dispersion purpose
  • Presented "Modal behavior of Metamaterial Waveguides" at Photonics group, UCLA

Project Manager, 07/2010 to 10/2012
Jabil Inc.Colorado Springs, CO,
  • Designed and implemented real-time control on power electronic system utilizing DSP (client: Iran Water and Power Development Company)
  • Designed and Implemented processing algorithms for library EM-EAS (Electromagnetic- Electronic Article Surveillance) system utilizing TI-DSP (C5509); Achieved detection rate of more than 92%
  • Designed antenna (Tx&Rx) for EM-EAS system (VF band: 366Hz); Achieved extensive point coverage

Electrical Engineer, 08/2008 to 07/2010
Gap Solutions, IncSan Antonio, TX,
  • Developed RF design for wideband CDMA-like multicarrier VHF system
  • Designed algorithms for direction finding (DF) using small array antenna system
  • Basic-designed and debugged Real-Time algorithm (Implemented on FPGA); Achieved arbitrary non-integer delay manipulated on digital signal

Satellite Communication Engineer, 10/2005 to 04/2006
International Paper CompanyBuffalo, NY,
  • Involved in setting up reliable satellite communication link for offshore piping application (client: Iran Marine Industrial Company SADRA).

Intern, 05/2004 to 08/2004
Laser Research Center Of Shahid Beheshti UniversityCity, STATE,
  • Worked on deposition of optical layered media (CVD).
Education and Training
M.Sc.: Optical and Microwave Communication Engineering, Expected in 2008
Sharif University of Technology - , Tehran
  • Thesis: "Open Metamaterial Waveguides and Nonlinear Magnetic Properties"
B.Sc.: Electrical Engineering, Expected in 2005
Sharif University of Technology - ,
  • Thesis: "Watermarking of Digital Images using Discrete Wavelet Transform (DWT)"
Academic and Relevant Experiences
  • Designed and optimized low loss optical waveguide filter by Stimulated Annealing (SA) heuristic method; presented to Nanophotonics Lab, University of Washington
  • Generated Matlab codes for modal analysis of any arbitrary-lateral-shaped waveguide with complex boundary conditions based on Finite Difference (FD) method; presented to Nanophotonics Lab, University of Washington
  • Simulated wave propagation through Anisotropic Active medium in arbitrary direction
  • Developed a mode-solver for guided modes in Step Index Fiber (hybrid modes) as well as in Slab Waveguide
  • Simulated transmission of electromagnetic wave through multi-layered media using BPM method and transfer matrix method
Additional Information
  • US permanent resident

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  • Sharif University of Technology
  • Sharif University of Technology

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