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Senior Principal Optical Engineer Jobs (NOW HIRING)

Optical Engineer Level 5

San Diego, CA ยท On-site

$137K - $177K/yr

Join our fast-paced and passionate team as a Senior Principal Optical Engineer. As we scale, you will be instrumental in building our foundation from the ground up. This is a dynamic, hands-on role ...

Optical Engineer Level 5

San Diego, CA ยท On-site

$137K - $177K/yr

Join our fast-paced and passionate team as a Senior Principal Optical Engineer. As we scale, you will be instrumental in building our foundation from the ground up. This is a dynamic, hands-on role ...

Senior Electro-Optical Engineer

New York, NY

$117K - $153K/yr

Applied Physics is seeking a highly motivated Senior Electro-Optical Engineer to join our team. The ... Lead a small optical engineering team as the Certified Principal Engineer (CPE) for the build and ...

Senior Electro-Optical Engineer

New York, NY ยท On-site

$117K - $153K/yr

Applied Physics is seeking a highly motivated Senior Electro-Optical Engineer to join our team. The ... Lead a small optical engineering team as the Certified Principal Engineer (CPE) for the build and ...

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Senior Principal Optical Engineer information

See salary details

$82K

$155.4K

$214.5K

How much do senior principal optical engineer jobs pay per year?

As of Jun 9, 2026, the average yearly pay for senior principal optical engineer in the United States is $155,430.00, according to ZipRecruiter salary data. Most workers in this role earn between $125,500.00 and $173,000.00 per year, depending on experience, location, and employer.

What are Senior Principal Optical Engineers?

Senior Principal Optical Engineers are highly experienced professionals who design, develop, and oversee complex optical systems and technologies, such as lenses, lasers, fiber optics, and imaging devices. They typically lead advanced research projects, mentor junior engineers, and provide technical leadership in their organizations. Their expertise is crucial in industries like aerospace, telecommunications, defense, and consumer electronics, where precision and innovation in optics are essential. In addition to technical design, they often collaborate with cross-functional teams to ensure product performance and reliability.

What are the key skills and qualifications needed to thrive as a Senior Principal Optical Engineer, and why are they important?

To thrive as a Senior Principal Optical Engineer, you need deep expertise in optical design, physics, and engineering principles, typically backed by an advanced degree in optical engineering or a related field. Familiarity with technical tools such as Zemax, Code V, MATLAB, and proficiency in simulation, modeling, and prototyping is essential. Leadership, problem-solving, and effective communication are standout soft skills for overseeing complex projects and mentoring junior engineers. These abilities ensure the delivery of innovative optical solutions and successful project outcomes in highly technical environments.

What are some of the main challenges a Senior Principal Optical Engineer faces when leading cross-functional projects?

A Senior Principal Optical Engineer often leads complex projects that require coordinating with diverse teams, such as mechanical, electrical, and manufacturing engineers. One common challenge is aligning differing technical requirements and timelines across departments while ensuring that optical performance meets stringent specifications. Effective communication and problem-solving are crucial, as unexpected integration issues or shifting project priorities can arise. Successfully navigating these challenges not only ensures project success but also positions the engineer as a key technical leader within the organization.

What is the difference between Senior Principal Optical Engineer vs Optical Systems Engineer?

AspectSenior Principal Optical EngineerOptical Systems Engineer
CredentialsBachelor's/Master's/PhD in Optical Engineering or related field, professional certificationsBachelor's/Master's in Optical Engineering, Physics, or related field
Work EnvironmentResearch labs, R&D departments, product development teamsDesign, integration, testing of optical systems in various industries
Industry UsageHigh-tech, aerospace, defense, telecommunicationsConsumer electronics, medical devices, industrial equipment

The Senior Principal Optical Engineer typically holds advanced degrees and leads complex optical projects, focusing on innovation and technical leadership. Optical Systems Engineers often work on designing and testing optical components and systems, supporting product development. While both roles require strong optical knowledge, the Senior Principal Optical Engineer is more senior, strategic, and research-oriented, whereas the Optical Systems Engineer is more hands-on and implementation-focused.

What cities are hiring for Senior Principal Optical Engineer jobs? Cities with the most Senior Principal Optical Engineer job openings:
What are the most commonly searched types of Principal Optical Engineer jobs? The most popular types of Principal Optical Engineer jobs are:
What states have the most Senior Principal Optical Engineer jobs? States with the most job openings for Senior Principal Optical Engineer jobs include:
Infographic showing various Senior Principal Optical Engineer job openings in the United States as of June 2026, with employment types broken down into 59% Full Time, 8% Part Time, 8% Temporary, and 25% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $155,430 per year, or $74.7 per hour.

Optical Engineer Level 5

Monarch Quantum

San Diego, CA โ€ข On-site

$137K - $177K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 18 days ago


Job description

Join our fast-paced and passionate team as a Senior Principal Optical Engineer. As we scale, you will be instrumental in building our foundation from the ground up. This is a dynamic, hands-on role for a self-starter who thrives in a fluid startup environment. You'll have the opportunity to work on cutting edge technologies, work closely with leadership, and develop and implement engineering practices that support our mission and growth. Your key responsibilities are as follows:

  • Work independently and in a team while overcommunicating with the manager, project engineer, and the teammates.
  • Execute complex engineering tasks involving planning, preparation, data/information collection, and analysis and decision-making in a process involving peer reviews and documentation of the results.
  • Use tenacity, patience, self-discipline, and passion for excellence to assure accuracy of execution schedule, data quality/integrity, conformance to company best practices, clarity in communication, and documentation
  • Use every opportunity to grow competency through mentorship, curiosity, communication, exposure, and initiative
  • Drive innovation in modeling, design, analysis, and alignment methods to support product roadmap
  • Perform laser system architecture trade studies with complex and interdependent performance requirements
  • Support business development with architecture concepts, feasibility analysis, and white paper writing
  • Support project engineering with project scope, schedule, and risk analysis

Requirements

    • This position requires access to export-controlled information. Employment is contingent upon the applicant being a U.S. person as defined by 8 U.S.C. ยง 1324b(a)(3).

Experience:

    • A bachelorโ€™s degree in Optical Engineering, Physics, or a related field.
    • Minimum of 14 years of relevant experience, ideally within a startup or technology company.

Skills:

    • Deep understanding of laser beam propagation: how optic movement and rotation impact a beamโ€™s near-field, far-field, beam quality, and fiber coupling efficiency
    • Fluency applying ray-equivalent methods of laser propagation to guide architecture and debug layout questions
    • Fluency determining the best way to answer a design problem, including combinations of design software, macros, external code, and manual calculations
    • Ability to use paraxial raytracing and ABCD matrices to derive analytical expressions for trends, sensitivities, and scaling factors in various optical layouts
    • Fluency in applying first-order imaging and the overlap integral of Gaussian beams to interrogate the design space of a laser module
    • Understanding of how component properties impact alignment sensitivity (e.g. collimation lens focal length)
    • Ability to take a novel optical design question, distill it to an algebraic method, and validate the analysis using a second calculation method (e.g. optical design software).
    • Ability to turn exotic optical requirements into concrete analysis tasks (e.g. acousto-optic modulator RF tuning range, impact of thermal lensing)
    • Fluency in applying first-order imaging and the overlap integral of Gaussian beams to derive component fabrication and alignment requirements
    • Ability to derive quantitative requirements for optic prescriptions (surface roughness, scratch/dig, surface power, surface irregularity, aspheric sag error, material properties)
    • Understanding of different tolerancing methods for conventionally polished, sub-aperture polished, and precision glass molded components
    • Ability to engage vendors to understand capabilities and drive clarity to get quotes for components, accounting for supplier yield, risk, and schedule
    • Understanding of optical metrology methods and how to specify a drawing congruent with a vendorโ€™s measurement facilities
    • Fluency creating efficient layout optimization workflows in non-sequential design software for nontrivial architectures
    • Understanding of polarization ray tracing and how to analyze polarization through optic trains with dozens of surfaces
    • Understanding of polarization components within both Jones and Mueller models
    • Deep understanding of fiber optics for high power CW laser systems: multi-mode, single mode, polarization maintaining, step index, photonic crystal, endcaps
    • Understanding of stray light analysis in the context of a laser system
    • Deep understanding of optical modeling paradigms: ray tracing, wave propagation, electromagnetic solvers
    • Deep understanding of methods for laser intensity, frequency, and phase noise measurement and control
    • Deep understanding of how to design electro-optics (modulators) and opto-electronics (detectors) into laser systems
    • Understanding of nonlinear optical effects: predictively modeling resonant and non-resonant harmonic generation, frequency conversion, parametric amplification
    • Demonstrated successful execution of engineering tasks including use of design software (Ansys Zemax OpticStudio, Photon Engineering FRED, and/or Lambda Research OSLO preferred) and quantitative analysis/programming tools (Python), instrumentation and measurement, part fabrication or procurement, integration and test, data collection, and documentation

Startup Mindset:

  • You're creative, flexible, and eager to wear multiple hats.
  • You're passionate about building systems from the ground up and comfortable with ambiguity and change.

Benefits

The expected annual salary range for this position is $165,000-$225,000.

As a full-time employee, you will be eligible for Monarchโ€™s comprehensive benefits package, which includes:

  • Medical, Dental, and Vision insurance
  • Fidelity 401(k) plan with 4% employer matching
  • 20 paid time off (PTO) days per year
  • 13 paid company holidays
  • 9/80 work schedule (every other Friday off)


Monarch Quantum is proud to be an equal opportunity employer and does not discriminate on the basis of race, color, citizenship status, national origin, ancestry, sex, sexual orientation, age, religion, creed, physical or mental disability, medical condition, marital status, veteran status or any other characteristics protected under applicable federal, state and local laws.