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Spatial Computing Jobs in Colorado (NOW HIRING)

Preferred Qualifications Familiarity in computer vision or image processing, AR/VR systems, spatial computing Experience with AI-based tooling and framework development Experience with visualization ...

Seasonal Meta Sales Specialist

Westminster, CO · On-site

$13.50 - $16.25/hr

Add high-impact experience in consumer AI, spatial computing, and premium brand representation to your background * Sales Contests: Additional incentives provided that may include Meta products ...

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Spatial Computing information

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 are popular job titles related to Spatial Computing jobs in Colorado?

For Spatial Computing jobs in Colorado, the most frequently searched job titles are:

What job categories do people searching Spatial Computing jobs in Colorado look for?

The top searched job categories for Spatial Computing jobs in Colorado are:

Infographic showing various Spatial Computing job openings in Colorado as of August 2026, with employment types broken down into 86% Full Time, 11% Part Time, and 3% Contract. Highlights an 88% Physical, 2% Hybrid, and 10% Remote job distribution.

Senior Optical Engineer (Quantum Computing)

Infleqtion

Louisville, CO • On-site

$134K - $174K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 15 days ago


Job description

At Infleqtion we solve the world’s most challenging problems using cutting-edge quantum technology. Our mission is to commercialize atom-based quantum products that provide orders of magnitude improvements in sensing and computing applications. We are proud to work tirelessly to create and lead the quantum ecosystem towards meaningful advancements today and set the technology roadmap for tomorrow.

POSITION SUMMARY

Within Infleqtion’s Quantum Computing Product Group, the Hardware Engineering Team is seeking a Senior Optical Engineer to independently design, implement, and validate complex optical subsystems for neutral-atom quantum computing platforms.

The successful candidate will serve as an experienced individual contributor, working closely with physicists and cross-disciplinary engineering teams to translate experimental requirements into robust optical designs. This role is hands-on and laboratory-focused, with increasing responsibility for technical execution, problem solving, and informal mentorship of developing engineers.

JOB RESPONSIBILITIES

Typically, you will be entrusted with:

  • Designing, modeling, and validating of optical and laser-based subsystems for neutral-atom quantum computing platforms.
  • Integrating and testing scalable atom addressing and control technologies. This includes but is not limited to digital micromirror devices (DMDs), spatial light modulators (SLMs), acousto-optic deflectors (AODs), electro-optic modulators (EOMs), metasurface-based optics, and fast multi-beam steering architectures.
  • Collaborating closely with physicists and optical, mechanical, electrical, software, and systems engineers to support the full experimental and hardware development lifecycle, from early research demonstrations to integrated, scalable systems.
  • Leading hands-on laboratory efforts, including optical assembly, precision alignment, debugging, and performance characterization of complex, multi-channel optical systems.
  • Developing and maintaining high-fidelity optical models using Zemax (OpticStudio), including tolerance analysis, sensitivity studies, and performance optimization informed by experimental data and system-level requirements.
  • Executing on the transition within a defined architecture of optical subsystems from research-grade configurations to commercial ready, repeatable, maintainable, and scalable hardware.
  • Providing technical guidance, and informal mentorship to optical engineers through design reviews, and hands-on coaching.
  • Establishing and improving best practices for optical design workflows, laboratory procedures, documentation, and version control.

Requirements

  • Bachelor's degree in optical engineering, physics, or a related field with at least 4 years of relevant experience. A Master's degree or Ph.D. is preferred. Relevant graduate research (M.S. or Ph.D.) may be counted toward the experience requirement.
  • Strong foundation in geometrical, Fourier, and physical optics, including Gaussian beam propagation, thin-lens imaging, optical relays, telescopes/beam expanders, imaging systems, microscope optics, diffraction, polarization, and spatial filtering.
  • Proficiency with Zemax (OpticStudio) for optical system design, sequential modeling, aberration analysis, PSF/MTF analysis, optimization and tolerancing.
  • Proficiency in Python for Zemax automation and data analysis.
  • Working knowledge of SolidWorks sufficient to collaborate on opto-mechanical layouts and design reviews.
  • Experience designing, modeling, and validating laser-based optics systems for microscopy, lithography, atomic physics, or quantum applications.
  • Experience with spatial light modulators (SLMs), including optical setup, calibration, beam shaping or pattern generation, and integration into laser-based or quantum optics systems.
  • Experience designing and analyzing beam-delivery and imaging systems, including Gaussian beam and fiber mode-field modeling, fiber coupling, apodization, point-spread-function analysis, modulation-transfer-function analysis, Fourier optics, and 4-f optical systems.
  • Hands-on experience integrating and troubleshooting common optical components and modulators, including filters, optical fibers, polarizers, waveplates, diffraction gratings, AOMs/AODs, EOMs, and SLMs.
  • Working knowledge of laboratory electronics and instrumentation used in optical experiments, including photodetectors, oscilloscopes, spectrum analyzers, signal generators, amplifiers, and electronic filters.
  • Hands-on laboratory expertise in precision optical alignment and experimental troubleshooting.
  • Experience using Git or similar version control systems for design artifacts, scripts, or analysis tools.

WE HIGHLY VALUE:

  • Experience working with stability-sensitive optical systems subject to thermal, vibrational, or long-term drift effects.
  • A hands-on, detail-oriented mindset with a strong sense of ownership and technical accountability.
  • Clear verbal and written communication skills, with the ability to bridge physics and engineering perspectives.
  • Positive, collaborative working style and enthusiasm for mentoring and developing engineers.

NOTE

  • Job responsibilities and requirements are illustrative, other responsibilities may be assigned as needed.
  • This position may require access to information protected under U.S. export control laws and regulations, including the Export Administration Regulations (EAR) and the International Traffic in Arms Regulations (ITAR). Please note that any offer for employment may be conditioned on authorization to receive software or technology controlled under these U.S. export control laws and regulations without sponsorship for an export license.

TRAVEL

Up to 10% travel may be required.

WORKING CONDITIONS and PHYSICAL REQUIREMENTS 

Work will normally be performed in an office and laboratory environment and around technical equipment including computers and lasers.  Able to sit, stand, bend, lift and carry up to 40 pounds without assistance.  Able to efficiently use automated office equipment such as laptops, copiers, and printers; able to effectively engage in communications (via phone, computer, or in-person).  Any required Personal Protective Equipment will be provided and must be properly used in accordance with company requirements.

Benefits

  • Salary range: $155,000 to $185,000 per year
  • 100% company-paid medical, dental, vision, short/long-term disability  
  • Employer-funded Health Savings Account  
  • Unlimited PTO  
  • 401(k) match  
  • Company-paid Life and AD&D Insurance  
  • Flexible Savings Account  
  • Paid FMLA, Maternity/Paternity Leave  
  • Employee Assistance Program  
  • Student Loan Repayment 
  • Equity Package

Notice to Recruitment Agencies:

Infleqtion does not accept unsolicited resumes from agencies. Infleqtion is not responsible for any fees related to unsolicited resumes.