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Spatial Computing Jobs in Taunton, MA (NOW HIRING)

Co-op, Designer

Boston, MA · On-site

$20 - $32/hr

... computing, and emerging technologies to enhance customer experiences and keep Fidelity at the ... Spatial Experience Design, AR/VR Design etc) * Presentation and Layout skills: ability to ...

Spatial Computing information

See Taunton, MA salary details

$57.2K

$142.8K

$244K

How much do spatial computing jobs pay per year?

As of Aug 20, 2026, the average yearly pay for spatial computing in Taunton, MA is $142,774.00, according to ZipRecruiter salary data. Most workers in this role earn between $105,300.00 and $188,300.00 per year, depending on experience, location, and employer.

What is spatial computing?

Spatial computing refers to the use of digital technology to interact with and manipulate physical space and objects. It integrates technologies like augmented reality (AR), virtual reality (VR), sensors, and artificial intelligence to create immersive experiences that blend the digital and physical worlds. Spatial computing is used in various fields, such as gaming, architecture, healthcare, and manufacturing, to enhance visualization, collaboration, and data analysis. This technology enables users to interact with digital content as if it were part of their real environment.

What are the key skills and qualifications needed to thrive as a spatial computing specialist, and why are they important?

To excel as a Spatial Computing Specialist, a solid background in computer science, mathematics, and 3D modeling, often supported by a relevant degree or certification, is essential. Familiarity with programming languages (such as C++, Python), spatial mapping tools, AR/VR development platforms (like Unity or Unreal Engine), and sensor integration is typically required. Strong problem-solving skills, creativity, and effective cross-disciplinary communication set top professionals apart in this field. These skills are vital for developing innovative spatial computing solutions that blend digital and physical environments, driving advancements in industries such as gaming, architecture, and healthcare.

What are some common challenges spatial computing professionals face when working on cross-disciplinary teams?

Spatial computing professionals often collaborate with experts in software development, user experience design, hardware engineering, and domain specialists. A common challenge is ensuring effective communication between team members with different technical backgrounds and vocabularies. Additionally, integrating spatial data and real-world context into digital solutions requires careful coordination and iterative testing. Successful professionals are proactive in bridging knowledge gaps and fostering a shared understanding to drive project goals forward.

What is the difference between Spatial Computing vs Augmented Reality Developer?

AspectSpatial ComputingAugmented Reality Developer
Required CredentialsTypically a degree in computer science, engineering, or related fields; knowledge of 3D modeling and programmingSimilar credentials, often with specialization in AR platforms and SDKs
Work EnvironmentDesigning and developing 3D environments, often involving hardware like AR/VR headsets and sensorsCreating AR applications for mobile devices or AR glasses, often in app development environments
Industry UsageUsed across gaming, architecture, healthcare, and training for spatial interactionPrimarily in entertainment, marketing, and mobile app development sectors

While both roles involve immersive technology, Spatial Computing focuses on creating comprehensive 3D environments and interactions, whereas Augmented Reality Developers specialize in overlaying digital content onto real-world views. Understanding these differences helps in choosing the right career path or project focus within immersive tech industries.

Is spatial computing worth it?

Spatial computing is a growing field that involves developing and working with 3D environments, augmented reality, and virtual reality technologies. Careers in this area often require skills in programming, 3D modeling, and understanding of hardware platforms, making it a valuable and expanding industry for tech professionals.

What cities near Taunton, MA are hiring for Spatial Computing jobs?

Cities near Taunton, MA with the most Spatial Computing job openings:

Optical Scientist - Quantum Systems

QuEra Computing, Inc.

Boston, MA • On-site

$130K - $211K/yr

Full-time

Re-posted 9 days ago


Job description

Summary

In this role, you will contribute to the advancement of neutral-atom-based quantum computing technologies by architecting, prototyping and integrating optical subsystems into QuEra's next-generation quantum computers. These subsystems rely on diffractive optics, holography, optical tiling strategies, aberration correction, and camera-in-loop feedback to deliver stable, uniform, and precisely controlled optical fields across large qubit arrays. As part of an R&D team, you will collaborate closely with a multidisciplinary group of physicists, engineers, and computer scientists to push the boundaries of quantum computing using neutral-atom platforms by helping shape long-term optical system design decisions.

Responsibilities

  • Design and prototype scalable optical architectures for trapping, addressing, and readout of next-generation neutral atom qubit arrays.
  • Model optical systems including diffraction, aberrations, polarization effects, and alignment sensitivities.
  • Establish integration strategies of new optical modules to optimize performance of neutral atom quantum computers.
  • Implement diagnostic and calibration strategies linking optical design to experimental outcomes, enabling rapid commissioning and long-term stability.
  • Partner with hardware engineering team to translate architectural concepts into deployable hardware and alignment procedures.
  • Evaluate emerging beam-shaping and multiplexing technologies for next-generation scalability.
  • Stay current with the latest advancements in optical engineering, beam shaping, and optical computing relevant to neutral atom quantum computing. 

Qualifications

  • Ph.D. or equivalent experience in Optics, Physics, or a related field with a strong background in optical system design and implementation. 
  • Hands-on laboratory experience with free-space optical alignment, diagnostics, and characterization techniques. 
  • Proven experience architecting and integrating complex systems with both hardware and software components. 
  • Demonstrated experience modeling optical propagation, aberrations, and system tolerances using analytical or numerical tools, e.g., Zemax. 
  • Strong programming skills in Python, C++, MATLAB, or similar environments for modeling, analysis, and calibration workflows. 
  • Strong analytical and problem-solving skills, with the ability to take technical ownership of complex subsystems. 
  • Effective communication skills and the ability to collaborate across physics, engineering, and software teams. 
  • Track record of publications or significant technical contributions in relevant areas.

Preferred Qualifications

  • CAD design skills. 
  • Proficiency with git, GitHub, and modern collaborative development workflows. 
  • Experience with neutral atom, ion, or other quantum computing platforms. 
  • Familiarity with beam shaping technologies such as spatial light modulators, acousto-optic deflectors, diffractive optics. 
  • Background in stability engineering, including mitigation of thermal, mechanical, and pointing drifts. 

The approximate base salary range for this position is $130,400 - $211,900.

We consistently monitor external market data and update base salary ranges accordingly.  We determine base compensation decisions on several factors, including as geographic placement, role-specific knowledge, skills, and/or experience.  In addition to our base salary offerings, we also provide equity grants for all new hires.

QuEra is committed to cultivating a diverse work environment and proud to be an equal opportunity employer. We highly value diversity in our current and future employees and do not discriminate (including in our hiring and promotion practices) based on race, religion, color, national origin, gender, gender expression, sexual orientation, age, marital status, veteran status, disability status or any other characteristic protected by law.

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