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Quantum Computing Research Jobs in Washington (NOW HIRING)

... research supporting quantum information science and advanced measurement technologies. The successful candidate will bring demonstrated expertise in one or more areas, including quantum computing ...

Visiting Fellow

Washington, DC · On-site

$55K - $75K/yr

... quantum computing. Visiting Fellows will spend an extended period of time (typically around 3 months) at Phasecraft. As full members of the team they conduct research, collaborate with colleagues ...

Visiting Fellow

Washington, DC · On-site

$70 - $90/hr

... quantum computing. Visiting Fellows will spend an extended period of time (typically around 3 months) at Phasecraft. As full members of the team they conduct research, collaborate with colleagues ...

You will bridge the gap between internal research and the broader US quantum landscape, acting as a ... of quantum computing. As part of our lean, high‑impact and rapidly growing team, you will be ...

Visiting Fellow

Washington, DC · On-site

$55K - $75K/yr

... quantum computing. Visiting Fellows will spend an extended period of time (typically around 3 months) at Phasecraft. As full members of the team they conduct research, collaborate with colleagues ...

Visiting Fellow

Washington, DC · On-site

$55K - $75K/yr

... quantum computing. Visiting Fellows will spend an extended period of time (typically around 3 months) at Phasecraft. As full members of the team they conduct research, collaborate with colleagues ...

Showing results 41-60

Quantum Computing Research information

See Washington salary details

$13

$25

$42

How much do quantum computing research jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for quantum computing research in Washington is $25.17, according to ZipRecruiter salary data. Most workers in this role earn between $19.62 and $26.97 per hour, depending on experience, location, and employer.

What is quantum computing research?

A Quantum Computing Research job involves studying and developing quantum algorithms, quantum hardware, and theoretical models to advance the field of quantum computing. Researchers work on optimizing quantum circuits, exploring quantum error correction, and creating novel applications for quantum systems. They often collaborate with physicists, computer scientists, and engineers to bridge theory and practical implementation. Roles can be found in academic institutions, government labs, and private companies working on cutting-edge quantum technologies.

What does someone in quantum computing research do?

Professionals in Quantum Computing Research typically spend their days designing and implementing quantum algorithms, conducting experiments on simulators or quantum hardware, and analyzing computational results. They often collaborate closely with physicists, engineers, and software developers to solve interdisciplinary problems and develop new quantum applications. Regular activities also include writing research papers, staying up-to-date with scientific literature, and presenting findings at meetings or conferences. This role often requires balancing independent research with teamwork and ongoing communication with stakeholders and collaborators.

What skills and qualifications are needed for quantum computing research?

To thrive in Quantum Computing Research, you generally need a strong background in physics, computer science, or mathematics, often supported by a relevant advanced degree (Master’s or PhD). Experience with quantum programming languages (like Qiskit or Cirq), quantum simulators, and familiarity with classical programming tools are essential. Problem-solving ability, collaboration, and clear communication help researchers work effectively within interdisciplinary teams. These skills enable you to contribute to advancing complex algorithms and practical applications in an evolving, technical field.

What are the most commonly searched types of Quantum Computing Research jobs in Washington?

The most popular types of Quantum Computing Research jobs in Washington are:

What are popular job titles related to Quantum Computing Research jobs in Washington?

For Quantum Computing Research jobs in Washington, the most frequently searched job titles are:

What job categories do people searching Quantum Computing Research jobs in Washington look for?

The top searched job categories for Quantum Computing Research jobs in Washington are:

Infographic showing various Quantum Computing Research job openings in Washington as of August 2026, with employment types broken down into 1% Internship, 1% As Needed, 81% Full Time, 9% Part Time, 2% Temporary, and 6% Contract. Highlights an 79% Physical, 4% Hybrid, and 17% Remote job distribution, with an average salary of $52,350 per year, or $25.2 per hour.

Quantum Researcher Scientist

Socket.dev

Gaithersburg, MD • On-site

$140 - $190/hr

Other

Medical, Dental, Vision, Life, Retirement

Posted 11 days ago


Key responsibilities

  • Design and conduct theoretical, computational, or laboratory-based quantum research.

  • Develop and evaluate quantum devices, algorithms, experimental systems, measurement methods, or network protocols.

  • Support quantum-system benchmarking, verification, calibration, and measurement standards.


Job description

Based in the Washington, D.C. Metro area,Pivot Path Solutions, LLCis a government contracting and business solutions firmthat offers enterprise IT solutions, strategic and acquisition planning, organizational development, and medical research and analytics services to help customers adapt and thrive in changing market conditions.

Position Summary

The Quantum Research Scientist will conduct theoretical, experimental, or computational research supporting quantum information science and advanced measurement technologies. The successful candidate will bring demonstrated expertise in one or more areas, including quantum computing, quantum sensing and metrology, quantum communications and networking, quantum optics, superconducting or atomic quantum systems, quantum algorithms, or quantum error correction.

Key Responsibilities
  • Design and conduct theoretical, computational, or laboratory-based quantum research.
  • Develop and evaluate quantum devices, algorithms, experimental systems, measurement methods, or network protocols.
  • Characterize quantum-system performance, including noise, fidelity, coherence, uncertainty, scalability, and reliability.
  • Develop scientific software for modeling, simulation, instrument control, data acquisition, processing, and visualization.
  • Support quantum-system benchmarking, verification, calibration, and measurement standards.
  • Analyze experimental and simulation results using statistically sound and reproducible methods.
  • Prepare technical reports, research papers, procedures, presentations, and supporting documentation.
  • Present research findings during technical reviews, conferences, and stakeholder meetings.
  • Collaborate with physicists, engineers, computer scientists, mathematicians, government researchers, universities, and industry partners.
  • Maintain accurate research records and comply with laboratory safety, information-security, and data-integrity requirements.
Required Qualifications
  • Must be a US citizen.
  • Ph.D. in Physics, Applied Physics, Quantum Engineering, Electrical Engineering, Computer Science, Applied Mathematics, Materials Science, or a closely related field. A master’s degree with at least five years of directly relevant research experience may be considered.
  • Demonstrated research experience in at least one quantum information science area.
  • Experience designing experiments, developing theoretical or computational models, or evaluating complex scientific systems.
  • Proficiency with Python or a comparable scientific programming language.
  • Experience with scientific data analysis, visualization, and reproducible research practices.
  • Strong analytical, problem-solving, technical writing, and presentation skills.
  • Ability to work independently and effectively within a multidisciplinary research team.
  • Ability to satisfy applicable federal facility-access, information-security, and export-control requirements.
Preferred Qualifications
  • Experience with superconducting circuits or qubits, trapped ions, neutral atoms, quantum photonics, single-photon systems, quantum sensors, or comparable quantum platforms.
  • Knowledge of quantum tomography, benchmarking, error correction, fault tolerance, quantum algorithms, or many-body simulation.
  • Experience with quantum-network architecture, entanglement distribution, routing protocols, control-plane development, or network simulation.
  • Experience with cryogenic systems, microwave or RF measurements, lasers, optical systems, FPGA/RFSoC platforms, or microfabrication.
  • Familiarity with Git, Linux, laboratory automation, and scientific software-development practices.
  • Knowledge of precision measurement, calibration, measurement uncertainty, SI traceability, or technical standards development.
  • Record of peer-reviewed publications, conference presentations, patents, or successful research prototypes.
  • Previous experience supporting NIST, another federal laboratory, a university research center, or a commercial quantum-technology program.
What We Offer:

Pivot Path Solutions strives to attract, motivate, and retain the best people in the industry. Our benefits package reflects our continued commitment to our employees by prioritizing the health and well-being of each member. The Company offers a comprehensive compensation package that includes:

  • Comprehensive benefits package, including health, dental, and vision insurance
  • Generous Contribution on Health, Dental and Vision Insurances
  • 100% Employer Paid Group Life Insurance, Short Term and Long-Term Disability
  • Safe Harbor 401(K) Plan
  • Health Saving Account (HSA)
  • Healthcare Flexible Saving Account (FSA) and Dependent Care FSA
  • Education Reimbursement
  • Employee Referral Program

U.S. Citizenship is required, and all selected applicants will be subject to a government security investigation. This includes meeting the eligibility requirements for access to classified information and the ability to obtain government-granted security clearance. Individuals may also be subject to background investigation including criminal history, employment verification, education verification, drug testing, and creditworthiness.

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