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Phd Quantum Computing Jobs (NOW HIRING)

Quantum Computing Measurement Engineer

Hillsboro, OR · On-site

$223K/yr

We are seeking an exceptional PhD-level Quantum Device Measurement Engineer to join our pioneering quantum computing team in Oregon. This role offers a unique opportunity to work at the intersection ...

Quantum Computing Engineer I

Batavia, NY · On-site

$79K - $104K/yr

SQMS is seeking a quantum computing engineer to study device performance and improve measurement ... PhD in Electronics Engineering or Physics (post-degree experience a plus). Applicable Knowledge ...

Quantum Computing Engineer I

Batavia, IL · On-site

$79K - $104K/yr

SQMS is seeking a quantum computing engineer to study device performance and improve measurement ... PhD in Electronics Engineering or Physics (post-degree experience a plus). Applicable Knowledge ...

Quantum Engineer

Boulder, CO · On-site

$120K - $155K/yr

At Atom Computing, we build quantum computers using arrays of optically trapped neutral atoms that ... PhD in Physics, Chemistry, Engineering, or a related field. Qualifications * Ability to effectively ...

Quantum Engineer

Boulder, CO · On-site

$120K - $155K/yr

At Atom Computing, we build quantum computers using arrays of optically trapped neutral atoms that ... PhD in Physics, Chemistry, Engineering, or a related field. Qualifications * Ability to effectively ...

Quantum Engineer

Boulder, CO · On-site

$120K - $155K/yr

At Atom Computing, we build quantum computers using arrays of optically trapped neutral atoms that ... PhD in Physics, Chemistry, Engineering, or a related field. Qualifications * Ability to effectively ...

QBID Quantum Computing SME

Arlington, VA · On-site

$220K - $260K/yr

PhD in a relevant hard science or engineering discipline (e.g., Physics, Materials Science, Electrical Engineering, Computer Science). * Demonstrated expertise in quantum computing. * Demonstrated ...

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Phd Quantum Computing information

What are the key skills and qualifications needed to thrive as a PhD in Quantum Computing, and why are they important?

To thrive as a PhD in Quantum Computing, you need deep knowledge of quantum mechanics, advanced mathematics, and computer science, along with a doctoral degree in a relevant field. Familiarity with quantum programming languages (such as Qiskit or Cirq), quantum hardware platforms, and experience with simulation tools are typically expected. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate across interdisciplinary teams and share complex concepts. These skills are vital for advancing research, developing novel algorithms, and contributing to the rapidly evolving field of quantum technologies.

What are some common interdisciplinary collaborations for a PhD in Quantum Computing?

PhD candidates in Quantum Computing frequently collaborate with experts from physics, electrical engineering, mathematics, and computer science. These collaborations often involve joint research projects, co-authored publications, and participation in interdisciplinary seminars or lab meetings. Such teamwork not only enriches research perspectives but also helps candidates develop a well-rounded skill set, which is highly valued in both academic and industry settings. Engaging with colleagues from diverse backgrounds can also lead to innovative approaches to solving complex quantum problems.

What are PhD quantum computing professionals?

PhD quantum computing professionals are experts who have completed a doctoral degree focused on the theory, development, and application of quantum computing technologies. They conduct advanced research in areas like quantum algorithms, quantum hardware, and quantum information theory. These professionals often work in academia, research institutions, or industry roles to push the boundaries of what quantum computers can achieve, solving problems that are intractable for classical computers. Their work involves both theoretical research and practical implementation, often collaborating with interdisciplinary teams.

What is the difference between Phd Quantum Computing vs Quantum Software Engineer?

AspectPhd Quantum ComputingQuantum Software Engineer
Required CredentialsPhD in Physics, Computer Science, or related fieldBachelor's or Master's in Computer Science, Physics, or related field; some roles prefer PhD
Work EnvironmentResearch labs, academia, industry R&DTech companies, startups, industry R&D teams
Industry UsageResearch, development, academiaProduct development, software engineering, application deployment
Common Search/ComparisonYesYes

While both roles involve quantum technologies, a Phd Quantum Computing focuses on research, theory, and developing new quantum algorithms, often in academic or industrial R&D settings. In contrast, a Quantum Software Engineer applies quantum programming skills to develop practical applications and software solutions in industry. The roles overlap in technical knowledge but differ in focus and work environment.

More about Phd Quantum Computing jobs
What cities are hiring for Phd Quantum Computing jobs? Cities with the most Phd Quantum Computing job openings:
What states have the most Phd Quantum Computing jobs? States with the most job openings for Phd Quantum Computing jobs include:
Infographic showing various Phd Quantum Computing job openings in the United States as of May 2026, with employment types broken down into 97% Full Time, and 3% Part Time. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution.
Quantum Calibrations Intern, Quantum Computing Services

Quantum Calibrations Intern, Quantum Computing Services

QuEra Computing, Inc.

Boston, MA

$16.25 - $21.75/hr

Other

Posted 16 days ago


Job description

Job Title:                Intern, Quantum Calibrations, Quantum Computing Services 
Job Type:                 Full-time, 3-6 months
Job Location:          Boston, MA 
Reports to:            VP of Quantum Computing Services                                                                                                                             

Summary:  

QuEra is seeking motivated interns to join our growing team focused on developing the calibration and performance characterization framework for QuEra's neutral-atom quantum computers. As an intern, you will collaborate with physicists, software engineers, and hardware specialists to design benchmarking protocols, build physics-informed models of device behavior, and develop predictive tools for real-time qubit state evolution.

This internship offers a unique opportunity to gain hands-on experience at the interface of quantum hardware and data science, contributing to the development of calibration and performance characterization frameworks for scalable, reliable neutral-atom quantum computers.

This role is part of QuEra's Quantum Computing Services team and is based at QuEra's Boston headquarters. The team's mission is to develop QuEra's neutral-atom technology into cutting-edge quantum computing products and services.

Core Responsibilities

  • Develop and test data analysis routines to fit, visualize, and interpret experimental data.
  • Design and execute device benchmarking and characterization experiments.
  • Build and apply Hamiltonian learning routines to infer effective system parameters from time-evolution data.
  • Develop predictive models for key performance metrics (gate fidelity, coherence, readout error) using time-series calibration history and machine learning methods.
  • Collaborate closely with physicists, engineers, and software developers to integrate your work into QuEra's operational stack.

Qualifications

Required

  • Foundational understanding of quantum mechanics and open quantum systems at the graduate level.
  • Experience designing and analyzing experiments involving quantum or physical systems
  • Strong programming skills in Python, including familiarity with libraries such as NumPy, SciPy, Pandas, and Matplotlib.
  • Enjoys hands-on experimentation, iteration, and uncovering structure in data.
  • Strong analytical, problem-solving, and communication skills.

Preferred

  • Familiarity with quantum gate characterization protocols (randomized benchmarking, process tomography, GST) and error budget decomposition.
  • Exposure to Hamiltonian learning, system identification, or quantum noise spectroscopy methods.
  • Experience applying machine learning (Gaussian processes, time-series models, or neural networks) to physical or experimental data.
  • Exposure to laboratory instrumentation, data acquisition, or experimental control systems.

Education & Experience

  • Currently pursuing or recently completed a Master's or PhD in Physics, Applied Physics, Computer Science, Electrical Engineering, Applied Mathematics, or a related quantitative field.

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.