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Quantum Strategies Jobs (NOW HIRING)

... benefit strategies, is a plus * A high degree of personal accountability and trustworthiness, a commitment to working within Quantum Health's policies, values and ethics, and to protecting the ...

... benefit strategies, is a plus * A high degree of personal accountability and trustworthiness, a commitment to working within Quantum Health's policies, values and ethics, and to protecting the ...

Our Culture Quantum Metric's number one objective is happy people, diverse and inclusive culture ... About the Role As a Strategic Account Executive at Quantum Metric, you will steward and grow a key ...

QBID Quantum Computing SME

Arlington, VA ยท On-site

$220K - $260K/yr

Advise senior DoW leadership on strategic direction, technology modernization priorities, and ... Demonstrated expertise in quantum computing. * Demonstrated experience supporting the DoW RDT&E ...

Senior Field Engineer - Quantum Security

$117K - $160K/yr

Inspire prospective clients by explaining IonQ's strategy, portfolio and answering technical questions about our quantum security portfolio and related applications. * Lead client discussions ...

The Microsoft Quantum program aims to fundamentally transform computing to help solve some of ... Simulation Strategy: Own the simulation roadmap (DFT/MD), for crystalline and amorphous materials ...

$200K/yr

Develop and implement the strategic vision and roadmap of the OQCI. * Recruit and mentor ... PhD (or MD-PhD) in quantum information science, computer science, physics, engineering, applied ...

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How much do quantum strategies jobs pay per hour?

As of Jun 10, 2026, the average hourly pay for quantum strategies in the United States is $34.72, according to ZipRecruiter salary data. Most workers in this role earn between $27.64 and $40.38 per hour, depending on experience, location, and employer.

What are Quantum Strategies?

Quantum strategies refer to approaches and techniques derived from the principles of quantum mechanics to solve complex problems, often in the fields of finance, computing, and game theory. These strategies leverage quantum phenomena such as superposition and entanglement to achieve results that are sometimes unattainable with classical methods. In finance, quantum strategies might involve using quantum algorithms for optimizing portfolios or risk analysis. In computing, they can mean designing algorithms that run on quantum computers to solve specific problems more efficiently. The field is multidisciplinary, combining knowledge of quantum physics, mathematics, and computer science.

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

To thrive as a Quantum Strategist, you need a solid background in quantum mechanics, mathematics, and computer science, often supported by an advanced degree such as a PhD in physics, mathematics, or a related field. Familiarity with quantum computing platforms (like IBM Q or Microsoft Quantum), programming languages (such as Python and Qiskit), and experience with algorithm development are typically essential. Strong analytical thinking, problem-solving abilities, and effective communication skills help distinguish top performers in this role. These skills are crucial for developing innovative quantum solutions and translating complex concepts into actionable strategies for organizations.

How does a professional in Quantum Strategies typically collaborate with multidisciplinary teams in a research or corporate environment?

Professionals in Quantum Strategies often work closely with physicists, computer scientists, engineers, and business analysts to develop and implement quantum computing solutions. Collaboration is essential, as projects frequently require integrating deep technical expertise with strategic business insights to solve complex problems. Team members regularly participate in brainstorming sessions, joint research initiatives, and cross-functional meetings to ensure alignment on project goals and to drive innovation. This dynamic, interdisciplinary environment encourages ongoing learning and communication across specialties, making teamwork a critical aspect of success in this field.

What is the difference between Quantum Strategies vs Data Analysts?

AspectQuantum StrategiesData Analysts
Required CredentialsAdvanced degrees in physics, mathematics, or related fields; specialized training in quantum computingBachelor's or master's in data science, statistics, or related fields; proficiency in data analysis tools
Work EnvironmentResearch labs, tech companies, or consulting firms focusing on quantum computing projectsCorporate offices, data centers, or consulting firms analyzing business data
Industry UsagePrimarily in technology, research, and defense sectors exploring quantum applicationsAcross finance, healthcare, marketing, and other industries for data-driven decision making

Quantum Strategies professionals focus on leveraging quantum computing principles for complex problem-solving, often requiring advanced technical credentials. Data Analysts interpret and visualize data to inform business decisions, typically with a background in statistics or data science. While both roles involve analytical skills, Quantum Strategies are more specialized in quantum technologies, whereas Data Analysts work across a broader range of industries with traditional data tools.

More about Quantum Strategies jobs
What cities are hiring for Quantum Strategies jobs? Cities with the most Quantum Strategies job openings:
What states have the most Quantum Strategies jobs? States with the most job openings for Quantum Strategies jobs include:
Infographic showing various Quantum Strategies job openings in the United States as of June 2026, with employment types broken down into 11% As Needed, 13% Full Time, 5% Part Time, 15% Temporary, 55% Contract, and 1% Summer. Highlights an 67% Physical, 3% Hybrid, and 30% Remote job distribution, with an average salary of $72,223 per year, or $34.7 per hour.
Quantum Calibration Engineer, Quantum Computing Services

Quantum Calibration Engineer, Quantum Computing Services

QuEra Computing, Inc.

Boston, MA โ€ข On-site

$120K - $180K/yr

Full-time

Posted 23 days ago


Job description

Quantum Calibration Engineer, Quantum Computing Services
Summary:
QuEra is seeking Quantum Calibration Engineers to join a growing effort focused on developing, testing and deploying calibration and performance characterization software on QuEra's neutral-atom quantum computers, translating experimental physics and data analysis into automation. This is a critical effort towards achieving programmability, reliability and peak performance of these machines for research, application development and commercial uses. Your work will directly shape how QuEra's quantum computers are characterized, stabilized, and improved over time, laying the foundation for scalable, self-calibrating quantum platforms.
In this role, you will work closely with physicists, software engineers, hardware specialists and actual quantum computers across QuEra's global sites. You will be responsible for designing efficient measurements of key system parameters, developing robust data-analysis pipelines, and building tools that translate raw experimental results into actionable insights for machine optimization.
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
  • Design data-efficient experimental routines, robust data analyses and troubleshooting workflows to extract key system parameters and insights.
  • Develop, refine, and maintain calibration pipelines consisting of complex data flows.
  • Develop robust data-fitting and optimization routines.
  • Validate, document and track calibration results, ensuring reproducibility and traceability across different hardware and software generations, and across machine deployments.

Qualifications
Required
  • Strong proficiency in Python, including experience with data analysis and visualization libraries (e.g., NumPy, SciPy, Pandas, Matplotlib).
  • Hands-on experience working with real experimental or measurement data, including noise handling, curve fitting, and model validation.
  • Familiarity with optimization and regression techniques, both classical (e.g., least-squares, nonlinear fits) and statistical (e.g., Bayesian inference, parameter estimation).
  • Comfort working in a hardware-facing environment, integrating software with lab instruments, data acquisition systems, or experimental control frameworks.
  • Solid understanding of version control (Git) and structured software development practices (testing, modularity, documentation).
  • Strong problem-solving ability, scientific curiosity, and a willingness to learn new physical systems quickly.
  • Eager to grow from a capable engineer into a domain expert in quantum device
  • Enjoys hands-on experimentation, iteration, and uncovering structure in data.
  • Comfortable working across abstraction layers, from analyzing raw voltage traces to designing experiment-level calibration strategies.
  • Collaborative and adaptable; able to operate in an interdisciplinary environment spanning science, software, and hardware teams.

Nice to have
  • Experience with machine learning or data-driven modeling (e.g., for pattern recognition, drift prediction, or parameter inference).
  • Exposure to experimental physics or optics in a lab environment.
  • Theory and practice of control systems.
  • Familiarity with Kubernetes, Docker, or distributed analysis systems for scaling calibration and data pipelines.
  • Knowledge of signal processing and time-series analysis for extracting trends or correlations in data.
  • Proficiency in C or C++.

Education & Experience
  • Bachelor's or Master's degree in Physics, Electrical Engineering, Computer Science, Applied Mathematics, or a related quantitative field.
  • Candidates with diverse or nontraditional backgrounds who demonstrate strong programming and analytical skills are encouraged to apply.
  • Experience or exposure to experimental research, data-driven system optimization, or hardware-software integration (through research, internships, or personal projects) is a strong plus.

The approximate base salary range for this position is $120,000 - $180,000.
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.
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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.