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Quantum Hardware Engineer Jobs in Florida (NOW HIRING)

Network Specialist

Jacksonville, FL · On-site

$75K - $85K/yr

Plans, installs, and supports hardware and software upgrades, and resolves associated technical ... Quantum Sky engineers the advantage across cyber, networks, software, and quantum because the ...

Support system design efforts involving quantum engineering concepts where applicable. * Prepare ... Knowledge of programmable logic controllers (PLCs), or similar automation hardware is desirable.

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Quantum Hardware Engineer information

See Florida salary details

$38.1K

$109.3K

$146.8K

How much do quantum hardware engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for quantum hardware engineer in Florida is $109,277.00, according to ZipRecruiter salary data. Most workers in this role earn between $92,300.00 and $121,800.00 per year, depending on experience, location, and employer.

What is a quantum hardware engineer?

Quantum Hardware Engineers are professionals who design, develop, and maintain the physical systems that enable quantum computing. They work on building and optimizing quantum processors, cryogenic systems, control electronics, and other hardware components necessary for quantum computers. Their role is essential for advancing the practical implementation of quantum technologies, collaborating closely with physicists, software engineers, and researchers to push the boundaries of computational power. These engineers often have backgrounds in physics, electrical engineering, or materials science, and are skilled in both theoretical and hands-on laboratory work.

What are some common challenges faced by quantum hardware engineers when scaling up quantum systems?

Quantum Hardware Engineers often encounter significant challenges when scaling quantum systems, such as maintaining qubit coherence and minimizing error rates as the number of qubits increases. Integrating control electronics and cryogenic systems while ensuring signal fidelity is another complex aspect of the role. Collaboration with physicists, materials scientists, and software engineers is essential to troubleshoot hardware limitations and develop scalable architectures. Overcoming these challenges requires creative problem-solving and a multidisciplinary approach, making the role both demanding and highly rewarding.

What are the key skills and qualifications needed to thrive as a quantum hardware engineer, and why are they important?

To thrive as a Quantum Hardware Engineer, you need a deep understanding of quantum physics, electrical engineering, and materials science, often supported by an advanced degree (such as a PhD) in a related field. Familiarity with technical tools like cryogenic systems, microwave electronics, and quantum measurement instruments, as well as programming languages such as Python, is typically required. Strong problem-solving abilities, attention to detail, and effective collaboration skills distinguish top candidates in this role. These competencies are critical for designing, building, and optimizing complex quantum devices that advance the field of quantum computing.

What is the difference between Quantum Hardware Engineer vs Quantum Software Engineer?

AspectQuantum Hardware EngineerQuantum Software Engineer
Required CredentialsBachelor's/Master's in Physics, Electrical Engineering, or related fields; experience with hardware design and fabricationBachelor's/Master's in Computer Science, Software Engineering, or related; programming skills in Python, C++, or similar
Work EnvironmentLaboratories, hardware prototyping facilities, clean roomsSoftware development environments, cloud platforms, simulation tools
Employer & Industry UsageQuantum tech companies, research labs, hardware manufacturersTech firms, research institutions, software companies working on quantum algorithms

Quantum Hardware Engineers focus on designing, building, and testing physical quantum devices, while Quantum Software Engineers develop algorithms and software to run on quantum hardware. Both roles are essential in advancing quantum technology but differ in their focus and skill sets.

What job categories do people searching Quantum Hardware Engineer jobs in Florida look for?

The top searched job categories for Quantum Hardware Engineer jobs in Florida are:

What cities in Florida are hiring for Quantum Hardware Engineer jobs?

Cities in Florida with the most Quantum Hardware Engineer job openings:

Infographic showing various Quantum Hardware Engineer job openings in Florida as of September 2026, with employment types broken down into 1% Internship, 88% Full Time, 8% Part Time, 2% Contract, and 1% Nights. Highlights an 83% Physical, 5% Hybrid, and 12% Remote job distribution, with an average salary of $109,277 per year, or $52.5 per hour.

Research Faculty I,12 month Salaried (Quantum Scientific Computing-FAMU-FSU College of Engineering)

Tallahassee, FL • On-site

Florida State University
Colleges, Universities, and Professional Schools • 10K+ employees

Full-time

Retirement

Re-posted 3 days ago


Florida State University rating

7.6

Company rating: 7.6 out of 10

Based on 45 frontline employees who took The Breakroom Quiz


Job description

Department
The NexCom Laboratory (Laboratory for Next-Generation Computation) at the FAMU-FSU College of Engineering invites applications for a Research Faculty I position in Quantum Scientific Computing.
Responsibilities
The successful candidate will play a key role in building a nationally recognized research program in Quantum Scientific Computing. The position offers the opportunity to conduct cutting-edge interdisciplinary research, develop externally funded research programs, build collaborations across engineering, mathematics, computer science, and quantum information science, supervise graduate students and postdoctoral researchers, and help establish the NexCom Laboratory as a leader in next-generation computational science.
  • Develop novel quantum algorithms for scientific computing and engineering applications.
  • Investigate opportunities for quantum advantage in computational mechanics, scientific computing, and engineering simulation.
  • Develop scalable quantum algorithms for finite element methods, linear systems, eigenvalue problems, optimization, and multiscale simulation.
  • Develop algorithms for both NISQ and fault-tolerant quantum computing (FTQC) architectures.
  • Advance modern quantum algorithmic frameworks, including block encoding, QSVT, and quantum linear algebra.
  • Develop quantum machine learning (QML) and hybrid quantum-classical methods for engineering and scientific computing.
  • Implement, benchmark, and evaluate algorithms using state-of-the-art quantum software frameworks and quantum hardware platforms.
  • Collaborate with researchers across engineering, computer science, mathematics, physics, and quantum information science.
  • Lead and contribute to competitive research proposals to federal agencies, industry, and private foundations.
  • Publish research findings in leading journals and conferences.
  • Supervise graduate students, postdoctoral researchers, and research staff.

Qualifications
Ph.D. in Mechanical Engineering, Aerospace Engineering, Applied Mathematics, Computer Science, Physics, Electrical Engineering, Computational Science, or a closely related discipline.
  • Demonstrated expertise in scientific computing, computational mathematics, numerical linear algebra, or computational mechanics.
  • Demonstrated knowledge of quantum computing, quantum algorithms, or quantum information science.
  • Strong programming skills in Python and C/C++.
  • Experience with quantum software frameworks such as Qiskit, PennyLane, Cirq, Classiq, or similar platforms.
  • Demonstrated record of scholarly publications in high-quality conferences and peer-reviewed journals.
  • Demonstrated ability to develop innovative research ideas and work collaboratively in interdisciplinary research environments.
  • Excellent written and verbal communication skills.

Preferred Qualifications
  • Experience developing quantum algorithms for scientific computing, computational mechanics, or engineering applications.
  • Experience with quantum machine learning, variational quantum algorithms, hybrid quantum-classical algorithms, or quantum optimization.
  • Background in finite element methods, computational mechanics, scientific computing, numerical linear algebra, or high-performance computing.
  • Experience using cloud-based quantum computing platforms and current quantum hardware.
  • Experience developing externally funded research proposals.
  • Experience mentoring graduate students, postdoctoral researchers, or research staff.

Other Information
About the College of Engineering
Located in Tallahassee, Florida, the FAMU-FSU College of Engineering is the nation's only jointly operated college of engineering, combining the complementary strengths of Florida State University and Florida A&M University. The College offers an exceptionally collaborative and interdisciplinary research environment with internationally recognized expertise in artificial intelligence, computational science, quantum science and engineering, advanced manufacturing, biomedical engineering, high-performance computing, and materials research. Faculty and students benefit from close collaborations with the National High Magnetic Field Laboratory, the Center for Advanced Power Systems, regional healthcare partners, and a growing network of federal laboratories and industry collaborators.
Helpful
The NexCom Laboratory develops next-generation computational methods that integrate scientific computing, artificial intelligence, and emerging computational paradigms to solve challenging problems in engineering, medicine, and science. Our research spans computational mechanics, scientific computing, machine learning, computational modeling, computer graphics, and quantum computing, with an emphasis on developing transformative computational technologies with real-world impact.
Quantum Scientific Computing is an emerging interdisciplinary field at the intersection of quantum computing, scientific computing, applied mathematics, and computational science. Our research seeks to discover and exploit quantum advantages for computationally intensive problems arising in engineering, physics, and data science. We investigate both Noisy Intermediate-Scale Quantum (NISQ) and Fault-Tolerant Quantum Computing (FTQC) paradigms, developing algorithms that deliver practical performance gains on near-term quantum hardware while laying the theoretical foundations for scalable quantum scientific computing on future fault-tolerant quantum computers.
Current research focuses on quantum algorithms for finite element analysis, computational mechanics, scientific computing, linear systems, eigenvalue problems, reduced-order modeling, multiscale methods, quantum machine learning (QML), and quantum optimization. Emphasis is placed on modern quantum algorithmic frameworks, including block encoding, Quantum Singular Value Transformation (QSVT), quantum linear algebra, and hybrid quantum-classical algorithms. Our goal is to identify, develop, and demonstrate quantum algorithms that provide meaningful quantum advantages for engineering and scientific computing problems across both NISQ and FTQC architectures.
Contact Info
Review of applications will begin immediately and will continue until the position is filled. Questions about the position should be directed to Dr. Suvranu De, Search Committee Chair, at sde@eng.famu.fsu.edu .
University Information
One of the nation's elite research universities, Florida State University preserves, expands, and disseminates knowledge in the sciences, technology, arts, humanities, and professions, while embracing a philosophy of learning strongly rooted in the traditions of the liberal arts and critical thinking. Founded in 1851, Florida State University is the oldest continuous site of higher education in Florida. FSU is a community steeped in tradition that fosters research and encourages creativity. At FSU, there's the excitement of being part of a vibrant academic and professional community, surrounded by people whose ideas are shaping tomorrow's news!
Learn more about Florida State University and our campuses .
Anticipated Salary Range
This is a 12-month, permanent, non-tenure-track faculty appointment at Florida State University with a competitive salary and benefits package. The starting date for this position is negotiable.
FSU Total Rewards
FSU offers a robust Total Rewards package. Visit our FSU Total Rewards website to learn more about our Compensation, Benefits, Wellness, Recognition, and Employee Development programs.
Use our FSU Total Compensation Calculato r to calculate Total Compensation options based on potential salary, benefits and retirement contributions, earned leave, and other employment-related perks.
How To Apply
If qualified and interested in a specific Faculty job opening as advertised, apply through the FSU Faculty Careers site (jobs.fsu.edu). If you are a current FSU employee, apply through myFSU Self Service.
Applicants are required to complete the online application with all applicable information. Applications must include education details even if attaching a Vita.
Applications should include the following documents:
  • A letter of interest
  • Most current curriculum vitae
  • A research statement
  • The names and contact information of three references

Considerations
This is a Faculty position.
This position requires successful completion of a criminal history background check .
This position is open until filled.
Equal Employment Opportunity
FSU is an Equal Employment Opportunity Employer.

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About Florida State University

Sourced by ZipRecruiter

One of the nation's elite research universities, Florida State University preserves, expands, and disseminates knowledge in the sciences, technology, arts, humanities, and professions, while embracing a philosophy of learning strongly rooted in the traditions of the liberal arts and critical thinking. Founded in 1851, Florida State University is the oldest continuous site of higher education in Florida. FSU is a community steeped in tradition that fosters research, encourages creativity, and embraces diversity. At FSU, there's the excitement of being part of a vibrant academic and professional community, surrounded by people whose ideas are shaping tomorrow's news!

Industry

Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Tallahassee, FL, US

Year founded

1851