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Quantum Computing Engineer Junior Jobs in Maryland

Our Team Quantum Motion is a fast-growing quantum computing scale-up headquartered in London, with ... Experience mentoring junior researchers and effectively supervising research students to support ...

$77.60 - $176/hr

Job Number: R0244204 Quantum Algorithms Developer The Opportunity Are you fascinated by the ... Knowledge of quantum computing hardware, control electronics, and environmental control ...

HPC Software Engineer LOCATION Annapolis Junction, MD 20701 CLEARANCE TS/SCI Full Poly (Please note ... Knowledge of emerging HPC technologies (e.g., quantum computing) * Experience with high-speed ...

As a Lead Quantum Engineer, you will be the cornerstone of Quantum Motion's first physical presence ... of quantum computing. As part of our lean, high‑impact and rapidly growing team, you will be ...

$77.60 - $176/hr

... computing architectures. You'll collaborate closely with theoretical and experimental physicists, engineers, and crossdisciplinary innovators to design the next generation of faulttolerant quantum ...

ARLIS Quantum Research Professional

College Park, MD · On-site

$17.75 - $24.50/hr

Critically evaluating the utility of emerging quantum computing, sensing, and networking ... guidance to junior colleagues. Analytical skills such as scientific programming (Python ...

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Quantum Computing Engineer Junior information

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 are popular job titles related to Quantum Computing Engineer Junior jobs in Maryland?

For Quantum Computing Engineer Junior jobs in Maryland, the most frequently searched job titles are:

What job categories do people searching Quantum Computing Engineer Junior jobs in Maryland look for?

The top searched job categories for Quantum Computing Engineer Junior jobs in Maryland are:

What cities in Maryland are hiring for Quantum Computing Engineer Junior jobs?

Cities in Maryland with the most Quantum Computing Engineer Junior job openings:

Infographic showing various Quantum Computing Engineer Junior job openings in Maryland as of June 2026, with employment types broken down into 96% Full Time, 1% Part Time, and 3% Contract. Highlights an 67% Physical, 4% Hybrid, and 29% Remote job distribution.

Senior Quantum Engineer

Riverdale Park, MD • On-site

$90 - $120/hr

Other

Medical

Posted 9 days ago


Job description

About The Role and Team

The Intelligent Automation Team develops the software that controls, and optimises our Quantum Processing Units. Working in close partnership with the Quantum Hardware Team, this group works to enable our processors to perform at their limits. Their work transforms raw quantum hardware into a usable platform by leveraging traditional software engineering alongside machine learning and other optimisation techniques. Together, these teams form the engine room of Quantum Motion’s technology, bridging physics, engineering, and computation to unlock the next generation of quantum capability.

As a member of our evolving scale-up, you’ll help shape the next stage of quantum computing. We’re still a small team, which means your expertise will directly influence our technology, our culture, and our trajectory, while giving you room to grow as we scale.

Our Team

Quantum Motion is a fast-growing quantum computing scale-up headquartered in London, with additional labs and offices in Spain, Australia and the US, founded by internationally renowned researchers from University College London and Oxford University with over 40 years’ experience in developing qubits and quantum computing architectures. Bringing together state-of-the-art cryogenic facilities and an outstanding interdisciplinary team, we are developing quantum processors based on industrial-grade silicon chips, with the potential to radically transform computing power in areas such as materials modelling, medicine, artificial intelligence and more.

This role forms part of our investment in state-of-the art facilities in Maryland, US. It reflects our commitment to driving innovation and collaborating with some of the brightest minds in the quantum industry, and additionally taps into the strong semiconductor and cryogenic ecosystem. Our mission is global and this is a rare and exciting opportunity to join a team which is shaping the future of quantum computing.

As part of our lean, high-impact and rapidly growing team, you will be working closely with our scientists, engineers and experts in a dynamic environment to make the site run smoothly and compliantly from day one, dedicated to contributing to the development of scalable quantum computers based on silicon technology.

Functions of the Role
  • Work with experimental experts to benchmark and optimise quantum processors based on spins in silicon quantum dots

  • Develop automated calibration routines for long term maintenance of QPU performance

  • Devise measurement and analysis roadmaps to test and optimise quantum operations

Experience – Essentials
  • PhD degree in physics, chemistry, or engineering

  • Proven track record of leadership in dynamical characterisation and control of spin qubits in solid-state systems

  • Experience in defining research goals and leading teams toward successful technical outcomes

  • Familiar with the use of high-frequency electronics

  • Knowledge of quantum information systems and operations

  • Ability to independently design and carry out complex experiments; perform data analysis and preparation of technical reports and presentations

  • Knowledge of data acquisition software (Python, Matlab)

  • Ability to lead and motivate a team

  • Exceptional ability to communicate complex technical strategies to stakeholders, write grant applications, and author technical reports

Experience – Desirable
  • Strong experience with machine learning techniques and their application to complex physical systems.

  • Demonstrated capability in benchmarking quantum systems using methods such as randomised benchmarking and gate-set tomography.

  • Proven team leadership and people-management skills, including supervising technical staff and guiding cross-functional research efforts.

  • Experience mentoring junior researchers and effectively supervising research students to support their academic and professional development.

  • Skilled in the simulation of spin-based quantum systems and the dynamical characterisation of silicon-based nanoelectronic devices.

  • Hands-on experience operating and troubleshooting deep cryogenic measurement systems.

  • Experience with the dynamical characterisation silicon-based nanoelectronic devices

  • Ability to supervise research students

Benefits
  • Be part of a creative, world-leading team

  • Competitive salary and share options scheme

  • Region-specific benefits (e.g. Health Insurance)

  • Choose your own laptop/kit

  • Flexible working

  • Located in Maryland College Park – a state-of-the-art quantum hub

EEO Statement

Quantum Motion is an equal opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, protected veteran status, age, pregnancy, genetic information, or any other characteristic protected by applicable federal, state, or local laws.

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