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Quantum Computing Engineer Junior Jobs in Dedham, MA

Exploring what's next in computing and shaping the technologies the world will rely on tomorrow ... junior team members. - Strong publication record in high-impact, peer-reviewed journals and top ...

Quantum Machine Builder

Boston, MA ยท On-site

$135K - $185K/yr

... in engineering, applied physics, or a related field, and at least 3 years of relevant work experience. The ideal candidate will bring a strong background in quantum physics and quantum computing ...

... computing, AI, quantum, and cloud. You'll collaborate with leading scientists, engineers, and ... junior team members. - Strong publication record in high-impact, peer-reviewed journals and top ...

Quantum Machine Builder

Boston, MA ยท On-site

$135K - $185K/yr

... in engineering, applied physics, or a related field, and at least 3 years of relevant work experience. The ideal candidate will bring a strong background in quantum physics and quantum computing ...

Showing results 21-40

Quantum Computing Engineer Junior information

See Dedham, MA salary details

$34.4K

$73.8K

$112.5K

How much do quantum computing engineer junior jobs pay per year?

As of Aug 21, 2026, the average yearly pay for quantum computing engineer junior in Dedham, MA is $73,753.00, according to ZipRecruiter salary data. Most workers in this role earn between $49,800.00 and $82,200.00 per year, depending on experience, location, and employer.

What does a quantum computing engineer junior do?

A Quantum Computing Engineer Junior assists in designing, developing, and testing quantum algorithms and hardware components. They typically work under the guidance of senior engineers and researchers, helping to build and maintain quantum computing systems. Their responsibilities can include coding quantum programs, running simulations, troubleshooting issues, and staying updated on the latest advancements in quantum technologies. This entry-level role offers hands-on experience and learning opportunities in the rapidly evolving field of quantum computing.

What are some common challenges faced by junior quantum computing engineers when transitioning from academia to industry?

Junior quantum computing engineers often find the transition from academia to industry challenging due to differences in project timelines, collaboration styles, and the need to quickly adapt to proprietary hardware and software tools. In industry, there's a greater emphasis on working as part of multidisciplinary teams and delivering results under tight deadlines. Additionally, engineers may need to broaden their expertise beyond theoretical concepts to include practical skills such as coding, debugging, and optimizing algorithms for real-world quantum devices. Continuous learning and adaptability are key to thriving in this dynamic and evolving field.

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

To thrive as a Quantum Computing Engineer Junior, you need a solid background in quantum mechanics, linear algebra, and computer science, typically supported by a degree in physics, computer science, or a related field. Familiarity with quantum programming languages like Qiskit or Cirq, and experience using quantum simulators and cloud-based quantum platforms are commonly required. Strong analytical thinking, problem-solving abilities, and curiosity are standout soft skills in this position. These skills and qualities are vital for contributing to complex quantum projects and advancing innovation in this rapidly evolving field.

What is the difference between Quantum Computing Engineer Junior vs Quantum Computing Engineer?

AspectQuantum Computing Engineer JuniorQuantum Computing Engineer
Required CredentialsBachelor's degree in physics, computer science, or related field; some experience or internshipsBachelor's or master's degree; more experience or specialized certifications preferred
Work EnvironmentEntry-level labs, research teams, or tech companies; supervised projectsMore independent roles; involved in design, development, and testing of quantum algorithms and hardware
Employer & Industry UsageStartups, research institutions, tech companies exploring quantum techEstablished tech firms, research labs, and industry leaders in quantum computing

The main difference between a Quantum Computing Engineer Junior and a Quantum Computing Engineer lies in experience, responsibilities, and independence. Junior roles focus on learning and supporting projects, while full engineers take on more complex tasks and leadership in quantum computing development.

What cities near Dedham, MA are hiring for Quantum Computing Engineer Junior jobs?

Cities near Dedham, MA with the most Quantum Computing Engineer Junior job openings:

Infographic showing various Quantum Computing Engineer Junior job openings in Dedham, MA as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, 2% Temporary, and 3% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $73,753 per year, or $35.5 per hour.

Optical Scientist - Quantum Systems

QuEra Computing, Inc.

Boston, MA โ€ข On-site

$130K - $211K/yr

Full-time

Re-posted 10 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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