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Internship Quantum Software Engineer Jobs in Boston, MA

Senior HPC and Quantum Systems Engineer

Westford, MA · Hybrid

$108K - $148K/yr

We are seeking a Senior Quantum/HPC Systems Engineer to help architect, deploy, and operate a first ... Experience with or strong interest in quantum software environments including CUDA-Q, Qiskit, Cirq ...

Senior HPC and Quantum Systems Engineer

Westford, MA · Hybrid

$108K - $148K/yr

Experience with or strong interest in quantum software environments including CUDA-Q, Qiskit, Cirq ... systems engineers, and external partners. Ways to Stand Out from the Crowd: * Direct experience ...

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Internship Quantum Software Engineer information

See Boston, MA salary details

$14

$27

$42

How much do internship quantum software engineer jobs pay per hour?

As of Aug 1, 2026, the average hourly pay for internship quantum software engineer in Boston, MA is $27.61, according to ZipRecruiter salary data. Most workers in this role earn between $22.45 and $31.35 per hour, depending on experience, location, and employer.

How to get an internship in quantum computing?

To secure an internship as a quantum software engineer, candidates should have a strong foundation in quantum mechanics, linear algebra, and programming languages like Python, often with experience in quantum computing frameworks such as Qiskit or Cirq. Relevant coursework, personal projects, and internships in related fields can strengthen applications, and applying through university programs or company internship portals is common practice.

What is the difference between Internship Quantum Software Engineer vs Quantum Software Developer?

AspectInternship Quantum Software EngineerQuantum Software Developer
Required CredentialsCurrently pursuing or recently completed a degree in Computer Science, Physics, or related fieldsBachelor's or Master's in similar fields, with some experience or projects in quantum computing
Work EnvironmentInternship programs, often in research labs or tech companies, with mentorshipFull-time roles in tech companies, research institutions, or startups
Employer & Industry UsageUsed by companies developing quantum algorithms and hardware, universities, and research labsEmployed in software development teams focusing on quantum algorithms and applications

In summary, an Internship Quantum Software Engineer is an entry-level position aimed at students or recent graduates gaining hands-on experience, while a Quantum Software Developer is a full-time professional role requiring more experience and responsibility in developing quantum software solutions.

How much do quantum computing interns get paid?

Quantum software engineering internships typically offer stipends or hourly pay ranging from $15 to $35 per hour, depending on the company, location, and level of experience. Some internships may also provide additional benefits such as mentorship and training in quantum programming languages like Qiskit or Cirq.

What are the big 4 internships?

The 'Big 4' internships typically refer to summer internship programs offered by the four largest professional services firms: Deloitte, PricewaterhouseCoopers (PwC), Ernst & Young (EY), and KPMG. These internships provide opportunities in audit, consulting, advisory, and technology roles, often targeting students pursuing degrees in accounting, finance, or related fields, including roles like a Quantum Software Engineer where specialized skills are valued.

What are the key skills and qualifications needed to thrive as an Internship Quantum Software Engineer, and why are they important?

To thrive as an Internship Quantum Software Engineer, you need a solid background in quantum mechanics, computer science, and programming languages such as Python, often supported by enrollment in or completion of a STEM degree. Familiarity with quantum computing frameworks like Qiskit or Cirq, as well as experience with version control systems, is highly beneficial. Strong analytical thinking, problem-solving abilities, and effective teamwork skills set candidates apart in this role. These competencies are crucial for contributing to complex quantum projects, learning rapidly, and collaborating within an innovative research environment.

What are some common challenges faced by Quantum Software Engineering interns, and how can they overcome them?

Quantum Software Engineering interns often encounter challenges such as adapting to new quantum programming languages (like Qiskit or Cirq), understanding complex quantum algorithms, and bridging the gap between theoretical concepts and practical implementation. Collaborating with experienced team members, actively participating in code reviews, and seeking mentorship can help interns quickly build their skills. Additionally, taking advantage of internal training resources and regularly discussing progress with supervisors ensures effective learning and integration into the team.

What is an Internship Quantum Software Engineer?

An Internship Quantum Software Engineer is a student or recent graduate who works with a team to develop and test software for quantum computers. Their responsibilities often include writing code for quantum algorithms, simulating quantum circuits, and assisting with research projects. They gain hands-on experience with quantum programming languages such as Qiskit, Cirq, or Q#. This role provides valuable exposure to the rapidly evolving field of quantum computing and helps interns build skills for a future career as a quantum software engineer.

What did Elon Musk say about quantum computing?

Elon Musk has expressed interest in quantum computing's potential to revolutionize technology, but he has also highlighted concerns about its risks and the need for careful development. As a CEO involved in multiple high-tech fields, Musk emphasizes the importance of understanding quantum advancements and their implications for future innovation and security.
What are the most commonly searched types of Quantum Software Engineer jobs in Boston, MA? The most popular types of Quantum Software Engineer jobs in Boston, MA are:
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What job categories do people searching Internship Quantum Software Engineer jobs in Boston, MA look for? The top searched job categories for Internship Quantum Software Engineer jobs in Boston, MA are:
What cities near Boston, MA are hiring for Internship Quantum Software Engineer jobs? Cities near Boston, MA with the most Internship Quantum Software Engineer job openings:
Infographic showing various Internship Quantum Software Engineer job openings in Boston, MA as of July 2026, with employment types broken down into 97% Full Time, 1% Part Time, and 2% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $57,435 per year, or $27.6 per hour.

Scientific Software Engineer - AMO Simulations

QuEra Computing, Inc.

Boston, MA • On-site

$102K - $166K/yr

Full-time

Posted 23 days ago


Job description

Summary
QuEra Computing Inc. seeks a Scientific Software Engineer with a strong background in quantum dynamics, numerical simulation, and open quantum systems to help develop software tools for modeling neutral-atom quantum processors.
In this role, you will work at the intersection of AMO theory, scientific computing, and quantum software. You will build simulation and analysis tools that help researchers understand system behavior, model noise and decoherence, validate control protocols, and connect device-level physics to higher-level quantum computing workflows.
This role is ideal for someone who has used numerical methods to study quantum systems and wants to turn research-grade models into reliable, scalable software used by scientists and engineers.
Responsibilities
  • Develop and maintain scientific software for simulating neutral-atom quantum systems, including coherent dynamics, dissipation, noise, and measurement processes.
  • Implement numerical methods for quantum dynamics and open quantum systems, such as Lindblad master equations, quantum trajectories, Krylov subspace methods, Chebyshev polynomials, or related approaches.
  • Build production-grade software infrastructure and tools to efficiently model Rydberg interactions, atom motion, atom loss, laser control imperfections, decoherence channels, and other device-relevant effects, supporting AMO theory and device modeling efforts.
  • Collaborate with physicists and software engineers to translate theoretical models into tested, documented, and reusable software components.
  • Design simulation workflows that support benchmarking, calibration analysis, algorithm validation, and performance modeling.
  • Optimize numerical codes for accuracy, stability, performance, and usability across a range of system sizes and approximations.
  • Contribute to APIs, documentation, examples, and validation tests for internal and external users.
  • Contribute parts to QuEra's central virtualization platform to faithfully emulate hardware with AMO-informed noise.

Qualifications
  • Master's or Ph.D. in Physics, Applied Mathematics, Computer Science, Electrical Engineering, or a related field, or equivalent professional experience.
  • Strong background in quantum mechanics, AMO physics, quantum optics, or quantum information science.
  • Experience performing numerical simulations of open quantum systems, many-body quantum systems, or driven-dissipative quantum dynamics.
  • Strong programming skills in Python, Julia, C++, Rust, or similar languages used for scientific computing.
  • Experience with numerical linear algebra, differential equation solvers, Monte Carlo methods, sparse matrix methods, or high-performance simulation techniques.
  • Familiarity with modern software engineering practices, including version control, testing, code review, profiling, debugging, and documentation.
  • Ability to communicate clearly across theory, software, and experimental teams.

Preferred Qualifications
  • Experience modeling neutral atoms, Rydberg systems, trapped ions, superconducting qubits, photonic systems, or related quantum hardware platforms.
  • Familiarity with QuantumOptics.jl, QuTiP, SciPy, NumPy, ITensor, CUDA, MPI, or related scientific computing tools.
  • Experience with tensor networks, quantum trajectories, stochastic master equations, optimal control, noise spectroscopy, or error modeling.
  • Knowledge of quantum algorithms, analog quantum simulation, quantum error correction, or benchmarking methods.
  • Experience developing reusable scientific software packages or contributing to open-source scientific computing projects.
  • Comfort working with imperfect, evolving physical models and validating them against data or known limits.

The approximate base salary range for this position is $102,400 - $166,400.
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 is 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.