Diffractive Display Engineer (Design & Optimisation) in Abingdon

Diffractive Display Engineer (Design & Optimisation) in Abingdon

Abingdon Full-Time 63000 - 77000 £ / year (est.) No working from home possible
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At a Glance

  • Tasks: Design and optimise cutting-edge displays for augmented reality with a dynamic team.
  • Company: Join Snap Inc, a leader in innovative technology and AR experiences.
  • Benefits: Competitive salary, equity options, and comprehensive health benefits.
  • Other info: Collaborative culture with opportunities for personal and professional growth.
  • Why this job: Be at the forefront of AR technology and make a real impact on how people communicate.
  • Qualifications: PhD or 4+ years experience in physics, engineering, or related fields.

The predicted salary is between 63000 - 77000 £ per year.

Snap Inc is a technology company. We believe the camera presents the greatest opportunity to improve the way people live and communicate. Snap contributes to human progress by empowering people to express themselves, live in the moment, learn about the world, and have fun together. The Company’s three core products are Snapchat, a visual messaging app that enhances your relationships with friends, family, and the world; Lens Studio, an augmented reality platform that powers AR across Snapchat and other services; and its AR glasses, Spectacles.

We’re looking for a Nanophotonics Engineer/Scientist to join the Spectacles team at Snap Inc.

What you’ll do:

  • Use in‑house optical design tools and techniques for development of new displays for augmented reality (AR).
  • Support the development of novel optical design software to enable efficient analysis of advanced optical systems.
  • Contribute to the development of new AR waveguide designs suitable for high volume production at low cost.
  • Develop new optical structures and architectures to enhance the performance of our AR waveguides.
  • Incorporate data from physical measurements of nanostructures into models (from SEM, AFM, etc.).
  • Collaborate with cross‑functional engineering teams to bring up new AR waveguide designs for manufacture.

Knowledge, Skills & Abilities:

  • Experience in physics‑based design and optimisation.
  • Experience using Python for computation and optimisation.
  • Experience using scripting to interface with in‑house or commercial simulation tools.
  • Good organisation and planning skills suitable for high‑risk R&D projects.
  • Adaptable to deliverables on short timescales.
  • Strong verbal/written communication and reasoning skills.
  • Flexible and collaborative attitude appropriate for a dynamic R&D environment.

Minimum Qualifications:

  • PhD in mathematics, physics or engineering or 4+ years of relevant industry experience.

Preferred Qualifications:

  • Working knowledge of physical/diffractive optics modelling (FDTD, RCWA/FMM, etc.).
  • Working knowledge of optical ray‑tracing algorithms.
  • Working knowledge of polarisation analysis, including Jones calculus and related techniques.
  • Experience contributing to collaborative codebases using Git.
  • Experience with using AI coding tools efficiently.
  • Background knowledge in optics including imaging, illumination, geometric optics, radiometry and photometry.
  • Background knowledge in optical metrology techniques.
  • Background knowledge in the manufacture of diffractive or nanophotonics optical devices such as nanophotonics mastering, replication by nanoimprint lithography or photolithography, and optical coatings.

Compensation & Benefits:

We offer a competitive salary range of $77,000–$96,000, commensurate with your qualifications and experience, and the level of this role. This position is eligible for equity in the form of RSUs. Our compensation philosophy is designed to attract and retain top talent in the industry.

Accommodations:

If you have a disability or special need that requires accommodation, please let us know.

Workplace & Culture:

At Snap Inc. we believe that being together in person helps us build our culture faster, reinforce our values, and serve our community, customers and partners better through dynamic collaboration. We practice a “default together” approach and expect our team members to work in an office 4+ days per week.

Equality & Diversity Statement:

At Snap, we believe that having a team of diverse backgrounds and voices working together will enable us to create innovative products that improve the way people live and communicate. Snap is proud to be an equal‑opportunity employer, and committed to providing employment opportunities regardless of race, religious creed, color, national origin, ancestry, physical disability, mental disability, medical condition, genetic information, marital status, sex, gender, gender identity, gender expression, pregnancy, childbirth and breastfeeding, age, sexual orientation, military or veteran status, or any other protected classification, in accordance with applicable federal, state, and local laws.

Benefits:

Our benefits are built around your needs and include paid parental leave, comprehensive medical coverage, emotional and mental health support programs, and compensation packages that let you share in Snap’s long‑term success.

Diffractive Display Engineer (Design & Optimisation) in Abingdon employer: Snap Inc.

Snap Inc. is an exceptional employer that prioritises the health and safety of its employees while fostering a collaborative and innovative work culture. With a strong commitment to employee growth, you will have access to continuous learning opportunities and the chance to make a meaningful impact in the field of Environmental Health & Safety. Located in vibrant London and Abingdon, Snap Inc. offers a dynamic environment where your contributions are valued and recognised.

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Contact Details:

Snap Inc. Recruitment Team

We think you need these skills to ace Diffractive Display Engineer (Design & Optimisation) in Abingdon

Optical Design
Nanophotonics
Python Programming
Scripting for Simulation Tools
Physics-based Design and Optimisation
Optical Ray-tracing Algorithms
Polarisation Analysis