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Lumerical Jobs in Baltimore, MD (NOW HIRING)

Lumerical information

What is a Lumerical engineer?

Lumerical engineers are professionals who use Lumerical software tools to design, simulate, and analyze photonic devices and systems. They work primarily in the field of photonics and optoelectronics, leveraging Lumerical’s simulation tools for applications such as integrated optics, fiber optics, and nanophotonics. These engineers often collaborate with research and development teams to create high-performance optical components used in telecommunications, data centers, and other advanced technologies.

What types of projects do Lumerical engineers typically work on, and how does the team collaborate to deliver solutions?

Lumerical engineers are often involved in designing, simulating, and optimizing photonic devices and systems for applications like optical communications, sensing, or integrated photonics. Projects may range from developing new simulation features to supporting customer-specific workflows. Collaboration is key—engineers regularly work in cross-functional teams with software developers, product managers, and application specialists, using agile methodologies and frequent communication to deliver high-quality solutions. This team structure fosters knowledge sharing and offers opportunities to learn from experts across domains.

What are the key skills and qualifications needed to thrive as a Lumerical engineer, and why are they important?

To thrive as a Lumerical Engineer, you need a solid background in photonics, optics, and computational physics, usually supported by a degree in electrical engineering or a related field. Expertise in using Lumerical software for photonic device simulation, along with familiarity with CAD tools and programming languages like Python or MATLAB, is highly valuable. Strong problem-solving, analytical thinking, and communication skills help in designing innovative solutions and collaborating with multidisciplinary teams. Mastery of these skills ensures accurate simulations, efficient workflow, and successful development of advanced photonic technologies.

What is the difference between Lumerical vs Photonics Engineer?

AspectLumericalPhotonics Engineer
Required CredentialsKnowledge of photonics simulation software, engineering degreeDegree in optical, electrical, or photonics engineering; often familiar with simulation tools
Work EnvironmentResearch labs, R&D departments, simulation-focused rolesDesign, develop, and test photonic devices in industry or research settings
Industry UsageUsed by engineers for simulation and modelingProfessionals applying photonics principles in product development

While Lumerical refers to a software suite used by photonics professionals, a Photonics Engineer is a role that often requires proficiency with such tools. Both roles overlap in skills and industry, but Lumerical is a software product, whereas Photonics Engineer is a job title focused on applying photonics knowledge in practical projects.

What are popular job titles related to Lumerical jobs in Baltimore, MD?

For Lumerical jobs in Baltimore, MD, the most frequently searched job titles are:

What job categories do people searching Lumerical jobs in Baltimore, MD look for?

The top searched job categories for Lumerical jobs in Baltimore, MD are:

What cities near Baltimore, MD are hiring for Lumerical jobs?

Cities near Baltimore, MD with the most Lumerical job openings:

Infographic showing various Lumerical job openings in Baltimore, MD as of August 2026, with employment types broken down into 100% Full Time. Highlights an 75% In-person, and 25% Hybrid job distribution.

Computational Scientist - Metasurfaces, Photonics, and Inverse Design

Johns Hopkins Applied Physics Lab

Laurel, MD • On-site

$85 - $195/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 8 days ago


Job description

Do you enjoy pushing the limits of computational science for modeling physical systems?

Are you excited by the challenge of designing modern electromagnetic and photonic devices—driving the future of communications, sensing, and computing?

Do you thrive in a collaborative and interdisciplinary environment where ideas move from concept to fabrication, characterization, and real-world prototyping?

If so, we’re looking for someone like you to join our team at APL!

We are seeking a Computational Research Scientist to contribute to ongoing research projects in topics such as RF/optical metasurfaces, integrated photonics, and quantum computing. In this role, you will be developing and applying computational models, simulations, and optimization algorithms for designing novel devices. Your work will help drive research from simulation and fabrication to characterization and real-world deployment. Because our research portfolio spans a variety of topics, success in this role requires curiosity, technical independence, and the ability to quickly learn new physics, methods, and tools from textbooks and scientific literature.

Our group consists of physicists and engineers who are passionate about developing innovative solutions for the future of advanced devices, materials, and systems. We value scientific excellence, continuous learning, and open collaboration in order to tackle high-risk, high-reward ideas! Opportunities for professional growth and mentorship are strongly supported.

As a Computational Scientist, your responsibilities will include:
  • Building simulations using both custom numerical models and commercial tools to design novel electromagnetic devices.
  • Developing and characterizing optimization algorithms, inverse-design methods, and computational design workflows.
  • Taking ownership of design and analysis workflows by independently learning new programming tools, simulation frameworks, and theoretical concepts.
  • Reading scientific literature and applying emerging methods to open-ended research problems.
  • Working closely with engineers and experimentalists to explore new phenomena, build prototypes, analyze data, and validate models against experimental data.
  • Contributing to technical publications and conference presentations.
Qualifications

You meet our minimum qualifications for the job if you...

  • Hold a Bachelor’s degree in Physics, Electrical Engineering, or another field relevant to the duties as described above.
  • Have at least a year of professional or postgrad experience.
  • Have a foundational understanding in areas such as electromagnetics, optics, mathematical modeling, and computational science.
  • Are proficient in programming languages such as Python as well as related packages for data analysis.
  • Have demonstrated the ability to independently learn new technical topics, programming tools, or theoretical concepts through coursework, research, projects, or self-study.
  • Have experience on research projects in a collaborative environment.
  • Are able to obtain an Interim Secret level security clearance by your start date and can ultimately obtain Secret level clearance. If selected, you will be subject to a government security clearance investigation and must meet the requirements for access to classified information. Eligibility requirements include U.S. citizenship.

You'll go above and beyond our minimum requirements if you...

  • Hold a Master’s degree in Physics, Electrical Engineering, or a closely related field.
  • Have a strong background in electromagnetics, optics, or photonics, especially as related to metasurfaces, integrated photonics, tunable devices, or quantum computing hardware.
  • Have experience using full-wave electromagnetic simulation software (e.g. CST, HFSS, Lumerical, MEEP/MPB, Tidy3D) or multiphysics software (e.g. COMSOL).
  • Have developed advanced optimization algorithms (e.g., inverse design, adjoint optimization, machine learning-driven design).
  • Have experience with numerical methods, PDE solvers, scientific computing, or physics-based simulation from first principles.
  • Have experience working in high-performance computing (HPC) environments or developing scripted workflows for simulation or design automation.
  • Have contributed to technical publications, conference presentations, or research proposals.

All qualified applicants will receive consideration for employment without regard to race, creed, color, religion, sex, gender identity or expression, sexual orientation, national origin, age, physical or mental disability, genetic information, veteran status, occupation, marital or familial status, political opinion, personal appearance, or any other characteristic protected by applicable law. APL is committed to providing reasonable accommodation to individuals of all abilities, including those with disabilities. If you require a reasonable accommodation to participate in any part of the hiring process, please contact Accessibility@jhuapl.edu.

The referenced pay range is based on JHU APL’s good faith belief at the time of posting. Actual compensation may vary based on factors such as geographic location, work experience, market conditions, education/training and skill level with consideration for internal parity. For salaried employees scheduled to work less than 40 hours per week, annual salary will be prorated based on the number of hours worked. APL may offer bonuses or other forms of compensation per internal policy and/or contractual designation. Additional compensation may be provided in the form of a sign‑on bonus, relocation benefits, locality allowance or discretionary payments for exceptional performance. APL provides eligible staff with a comprehensive benefits package including retirement plans, paid time off, medical, dental, vision, life insurance, short‑term disability, long‑term disability, flexible spending accounts, education assistance, and training and development. Applications are accepted on a rolling basis.

Minimum Rate

$85,000 Annually

Maximum Rate

$195,000 Annually

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