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Remote Quantum Programmer Jobs (NOW HIRING)

... and engineering applications. The position offers a strong interdisciplinary environment ... Design and implement HPX extensions that schedule quantum kernels on remote quantum processors ...

This position can work onsite or hybrid from one of our offices in the US or fully remote. Travel: Up to 10% Job ID: 1766 The Role: We are looking for a Quantum Success Engineer to join a dynamic ...

This position can work onsite or hybrid from one of our offices in the US or fully remote. Travel: Up to 10% Job ID: 1766 The Role: We are looking for a Quantum Success Engineer to join a dynamic ...

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... Experience with quantum computing software frameworks, programming environments, and quantum ...

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... D. in computer science, cybersecurity, electrical and computer engineering, mathematics, physics ...

D-Wave Quantum Inc. (NASDAQ: QBTS) is a leader in the development and delivery of quantum computing ... Lead the management of AWS Direct Connect links and Site-to-Site VPNs to remote sites * Oversee ...

$141K - $182K/yr

Position Description The Quantum Optical Engineer will contribute to the design, development, testing, and optimization of QCi's advanced remote sensing and secure communication systems. This role ...

$126K/yr

... remote sensing applications. Position Description We are seeking a Postdoctoral Researcher in ... Required Skills and Experience - PhD in Physics, Applied Physics, Electrical Engineering, or a ...

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Remote Quantum Programmer information

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How much do remote quantum programmer jobs pay per hour?

As of Aug 22, 2026, the average hourly pay for remote quantum programmer in the United States is $39.54, according to ZipRecruiter salary data. Most workers in this role earn between $25.72 and $51.44 per hour, depending on experience, location, and employer.

What is a remote quantum programmer?

A Remote Quantum Programmer is a professional who develops and tests software for quantum computers while working from a location outside of a traditional office setting. They use specialized programming languages and frameworks, such as Qiskit or Cirq, to design quantum algorithms that can solve complex problems more efficiently than classical computers. These programmers often collaborate with research teams and other developers online and may contribute to advancing quantum computing technology and applications in fields like cryptography, optimization, and machine learning.

What are the key skills and qualifications needed to thrive as a remote quantum programmer?

To thrive as a Remote Quantum Programmer, you need a strong background in quantum computing, algorithms, and programming languages such as Python, along with a degree in computer science, physics, or a related field. Familiarity with quantum development frameworks like Qiskit, Cirq, or Microsoft's Q# as well as experience with cloud-based quantum platforms is typically expected. Problem-solving abilities, self-motivation, and effective remote communication are crucial soft skills for excelling in distributed teams. These skills enable you to efficiently develop, test, and deploy quantum algorithms while collaborating effectively in a rapidly evolving technical landscape.

How do remote quantum programmers typically collaborate with research teams and hardware engineers?

Remote Quantum Programmers often work closely with interdisciplinary teams that may include physicists, algorithm researchers, and hardware engineers. Collaboration usually takes place through virtual meetings, collaborative code repositories, and shared documentation platforms. Successfully communicating complex concepts across these specialties is essential, as programmers often need to adapt their code for specific quantum hardware or research objectives. Building strong virtual relationships and maintaining clear, frequent communication are key to thriving in this remote, collaborative environment.

What is the difference between Remote Quantum Programmer vs Quantum Software Engineer?

AspectRemote Quantum ProgrammerQuantum Software Engineer
Required CredentialsBachelor's or Master's in Physics, Computer Science, or related field; knowledge of quantum algorithmsBachelor's or Master's in Computer Science, Physics, or related; experience with quantum programming languages
Work EnvironmentRemote, often freelance or contract-basedRemote or on-site, typically within tech or research companies
Industry UsageQuantum computing startups, research labs, tech companiesTech firms, research institutions, companies developing quantum applications
Common Search/ComparisonYesYes

Remote Quantum Programmers and Quantum Software Engineers share similar educational backgrounds and work environments, often collaborating on quantum algorithm development. However, Remote Quantum Programmers may focus more on freelance or contract work, while Quantum Software Engineers are typically employed full-time by organizations. Both roles are integral to advancing quantum computing technology and are frequently compared by job seekers in the industry.

What cities are hiring for Remote Quantum Programmer jobs?

Cities with the most Remote Quantum Programmer job openings:

What are the most commonly searched types of Quantum Programmer jobs?

The most popular types of Quantum Programmer jobs are:

What states have the most Remote Quantum Programmer jobs?

States with the most job openings for Remote Quantum Programmer jobs include:

Remote | Quantum Chemistry & Electronic Structure Specialist - $60-$90/hour

24-MAG LLC

Remote

$60 - $90/hr

Other

Posted 7 days ago


Job description

About the job Remote | Quantum Chemistry & Electronic Structure Specialist - $60-$90/hour
We are sharing a specialised part-time consulting opportunity for computational chemistry professionals with deep expertise in quantum chemistry, electronic structure methods, scientific computing, and research-grade simulation workflows.
This role supports the development of advanced AI benchmarks for research-level scientific problem solving. Selected experts will design original computational chemistry problems that require AI systems to use specialised scientific software, perform electronic structure calculations, interpret results, diagnose methodological limitations, and reason through complex multi-step workflows.
Key Responsibilities
Quantum Chemistry & Electronic Structure

  • Develop challenging computational problems involving quantum chemistry and electronic structure analysis
  • Create tasks using Hartree-Fock, DFT, TDDFT, CASSCF, post-HF, and related computational methods
  • Design scenarios requiring careful selection of appropriate electronic structure methods
  • Evaluate orbital behaviour, electronic states, energies, and wavefunction characteristics
  • Develop problems involving difficult or non-trivial electronic structures
Excited-State & Orbital Analysis
  • Create computational tasks involving excited states and electronic transitions
  • Develop scenarios requiring interpretation of orbital populations, configurations, and diagnostics
  • Evaluate whether computational results are physically and chemically meaningful
  • Design problems involving competing electronic configurations or methodological ambiguity
  • Identify artefacts arising from approximations, convergence behaviour, or method limitations
PySCF & Scientific Computing
  • Develop problem setups using PySCF or comparable quantum chemistry software
  • Write Python code supporting calculations, validation logic, and benchmark workflows
  • Create reproducible simulation environments for electronic structure calculations
  • Diagnose numerical, convergence, and implementation issues in computational workflows
  • Apply hands-on knowledge of scientific software limitations and edge cases
Scientific Problem & Benchmark Design
  • Design original graduate-level problems based on realistic computational chemistry workflows
  • Create tasks requiring multi-step scientific reasoning rather than straightforward calculation
  • Develop both fully specified simulation problems and information-recovery challenges
  • Construct problems where systems must determine which calculations or analyses to perform
  • Ensure tasks reward method selection, interpretation, and scientific judgement
Simulation Validation & Difficulty Calibration
  • Test problem designs against advanced AI systems
  • Evaluate whether tasks reach the intended level of technical and reasoning difficulty
  • Refine problems based on observed model performance
  • Develop oracle functions, solution validators, and reference calculations
  • Confirm that each problem is technically rigorous, reproducible, and sufficiently well defined
Computational Research Workflows
  • Design scenarios reflecting authentic research-level computational chemistry practice
  • Evaluate trade-offs between computational cost, numerical stability, and methodological accuracy
  • Analyse cases where multiple computational approaches appear plausible
  • Identify hidden assumptions or methodological limitations affecting conclusions
  • Produce reference solutions demonstrating expert-level scientific reasoning
Ideal Profile
  • Graduate-level expertise in Computational Chemistry, Quantum Chemistry, Chemical Physics, Theoretical Chemistry, or a closely related STEM discipline
  • MS, PhD, or equivalent substantial research experience
  • Strong hands-on experience with electronic structure calculations and quantum chemistry software
  • Proven proficiency with PySCF or comparable scientific computing platforms
  • Experience using Hartree-Fock, DFT, TDDFT, CASSCF, post-HF, or related methods in research or professional work
  • Strong Python programming skills
  • Deep understanding of method selection, electronic structure diagnostics, excited-state analysis, and computational artefacts
  • Ability to interpret difficult or ambiguous computational results
  • Comfortable working in Linux, terminal environments, and remote compute sandboxes
  • Experience demonstrated through research publications, open-source contributions, or professional computational work
  • Familiarity with benchmark design, scientific education, examination development, or problem-set creation is advantageous
  • Experience with computational reproducibility or containerised environments is highly valued
Engagement Details
  • Part-time independent contractor engagement
  • Fully remote
  • Minimum availability of approximately 15-20 hours per week
  • Flexible scheduling based on project requirements
  • Compensation: $60-$90/hour
  • Projects may be extended, shortened, or concluded based on project needs and performance
  • Work must be completed without using confidential or proprietary information belonging to any employer, client, institution, laboratory, or other third party
  • H1-B and STEM OPT support is unavailable for this engagement

About the Platform
This opportunity is available through 24-MAG LLC. We connect experienced professionals with remote consulting opportunities across technical, evaluation, and project-based workstreams.
By submitting this application, you acknowledge that your information may be processed by 24-MAG LLC for recruitment and opportunity matching in accordance with our Privacy Policy: https://www.24-mag.com/privacy-policy.