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Quantum Information Science Jobs (NOW HIRING)

However, if you're interested in bringing your background in quantum information science research or software engineering to a different type of customer-facing role at this intersection, you might ...

Sc. in Computer/ SW Engineering, Physics, Applied Physics, Quantum Information Science, or a related field. Equivalent industry experience in SW engineering, System Engineering, and experimental ...

$77K - $176K/yr

Experience in quantum materials, qubit control, or quantum information science, demonstrated through professional experience or publications. * Experience performing research in quantum mechanics and ...

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quantum information science information

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How much do quantum information science jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for quantum information science in the United States is $42.71, according to ZipRecruiter salary data. Most workers in this role earn between $29.81 and $50.96 per hour, depending on experience, location, and employer.

What is quantum information science?

Quantum information science is a multidisciplinary field that combines principles of quantum mechanics with information theory, computer science, and engineering to study how information is represented, processed, and transmitted using quantum systems. It involves research into quantum computing, quantum cryptography, and quantum communication. The field aims to develop new technologies that leverage quantum properties, such as superposition and entanglement, to perform tasks that are infeasible or impossible for classical systems. Applications include secure communication, faster computation, and advanced simulation of physical systems.

How does a professional in quantum information science typically collaborate with interdisciplinary teams?

Professionals in Quantum Information Science often work closely with physicists, computer scientists, engineers, and mathematicians to tackle complex problems in quantum computing and communication. Collaboration is essential, as projects frequently require combining expertise in quantum mechanics with advanced computational methods and hardware development. Regular team meetings, joint research initiatives, and collaborative programming or experimental work are common, fostering a dynamic environment that encourages knowledge sharing and innovation. This interdisciplinary approach not only accelerates project progress but also provides valuable learning and networking opportunities.

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

To thrive as a Quantum Information Scientist, you need a strong background in quantum mechanics, linear algebra, and computer science, often supported by a PhD in physics, mathematics, or a related field. Familiarity with quantum programming languages (such as Qiskit or Cirq), high-performance computing, and simulation software is typically required. Analytical thinking, problem-solving ability, and effective collaboration are key soft skills for excelling in interdisciplinary research environments. These skills are crucial for advancing quantum technologies and driving innovation in a rapidly evolving scientific landscape.

What is the difference between Quantum Information Science vs Quantum Computing Engineer?

AspectQuantum Information ScienceQuantum Computing Engineer
Required CredentialsPhysics or Computer Science degrees, knowledge of quantum mechanicsEngineering or Computer Science degrees, programming skills, knowledge of quantum algorithms
Work EnvironmentResearch labs, academia, industry R&DTechnology companies, hardware development labs, research institutions
Industry UsageFundamental research, quantum algorithms, information theoryDesigning and building quantum hardware, software development

Quantum Information Science focuses on understanding and developing the theoretical foundations of quantum information and communication, often in research settings. Quantum Computing Engineers apply this knowledge to develop practical quantum hardware and software solutions. While both roles require knowledge of quantum mechanics, Quantum Information Science emphasizes theory and information processing, whereas Quantum Computing Engineering centers on hardware implementation and system development.

What can you do with a quantum information science degree?

A degree in quantum information science prepares individuals for roles in research, development, and engineering related to quantum computing, quantum communication, and quantum cryptography. Graduates can work in academia, industry, or government labs, often utilizing skills in programming, quantum algorithms, and hardware systems. The field requires strong knowledge of physics, computer science, and mathematics, and may involve working with specialized tools like quantum simulators and programming languages such as Qiskit or Cirq.
More about quantum information science jobs

What are the most commonly searched types of Quantum Information Science jobs?

The most popular types of Quantum Information Science jobs are:

What states have the most Quantum Information Science jobs?

States with the most job openings for Quantum Information Science jobs include:

Infographic showing various Quantum Information Science job openings in the United States as of September 2026, with employment types broken down into 1% As Needed, 76% Full Time, 19% Part Time, 1% Temporary, and 3% Contract. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $88,827 per year, or $42.7 per hour.

Scholar in Residence - Director, IBM HBCU Quantum Center

Washington, DC • On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 9 days ago


Howard University rating

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Company rating: 8.1 out of 10

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Job description

The Talent Acquisition department hires qualified candidates to fill positions which contribute to the overall strategic success of Howard University. Hiring staff "for fit" makes significant contributions to Howard University's overall mission.
At Howard University, we prioritize well-being and professional growth.
Here is what we offer:
  • Health & Wellness: Comprehensive medical, dental, and vision insurance, plus mental health support
  • Work-Life Balance: PTO, paid holidays, flexible work arrangements
  • Financial Wellness: Competitive salary, 403(b) with company match
  • Professional Development: Ongoing training, tuition reimbursement, and career advancement paths
  • Additional Perks: Wellness programs, commuter benefits, and a vibrant company culture

Join Howard University and thrive with us!
https://hr.howard.edu/benefits-wellness
BASIC FUNCTION:
Howard University invites applications for the position of Scholar in Residence (Director) of the IBM-HBCU Quantum Center. The University seeks a visionary internationally recognized scholar-leader to run one of the nation's most important initiatives at the intersection of quantum information science, HBCU research excellence, workforce development, and broadening participation in emerging technologies.
The successful candidate will maintain an active, externally funded research program while providing strategic, administrative, and intellectual leadership for the IBM-HBCU Quantum Center. The Scholar in Residence (Director) will shape and execute bold research, education, and partnership vision that advances Howard University's leadership in quantum science and engineering and strengthens the broader HBCU quantum ecosystem.
The Scholar in Residence (Director) will lead the Center's next phase of growth by expanding research capacity, building sustainable funding streams, deepening IBM and external partnerships, developing student and faculty talent pipelines, and positioning the Center as a national and global model for inclusive excellence in quantum information science and engineering.
SUPERVISORY ACCOUNTABILITY: NA
NATURE AND SCOPE:
PRINCIPAL ACCOUNTABILITIES/RESPONSIBILITIES:
The Scholar in Residence (Director) at Howard University's IBM-HBCU Quantum Center will support project execution and devote 40 hours per week to the Center. Key responsibilities include:
• Advance the strategic growth, research excellence, workforce development, and long-term sustainability of the IBM-HBCU Quantum Center.
• Work full-time at Howard University, dedicating 40 hours per week to the Center.
• Lead and advance research and development activities aligned with the Center's mission.
• Collaborate with the Center PI, staff, and stakeholders on daily operations; prepare technical and programmatic reports for sponsors and funding agencies; and develop high-impact research papers for journals and conferences.
• Develop research collaborations, seminars, workshops, and related academic initiatives.
• Support mentoring for students and postdoctoral researchers affiliated with the Center.
• Work closely with the designated Principal Investigator to support Center operations and develop, prepare, and submit proposals for external research funding and related sponsored initiatives.
• Teach approximately one to two CEA courses per semester, as needed.
• Lead initiatives that increase the number of HBCU students earning quantum-related credentials, participating in research experiences, and transitioning into graduate programs, national laboratories, and quantum technology careers.
• Expand the Center's research impact through high-quality peer-reviewed publications, collaborative research programs, and competitive external funding from federal agencies, industry, foundations, and philanthropic organizations.
• Implement an engagement strategy that promotes active participation and measurable contributions from students, faculty, researchers, and staff across all 27 member institutions in the IBM-HBCU Quantum Center network.
• Establish a performance-driven management framework with clear accountability, measurable research and educational outcomes, annual metrics, and continuous assessment of Center-wide progress and impact.
• Collaborate with Howard University leadership, IBM, and Center stakeholders to develop and execute a five-year sustainability plan that secures future funding, strengthens institutional support, expands research capacity, and advances Howard University's leadership in quantum information science.
• Position the IBM-HBCU Quantum Center as a nationally recognized model for inclusive excellence, innovation, workforce development, and research leadership in quantum information science and engineering.
• Develop and implement a strategic vision and roadmap that aligns the Center's activities with Howard University's research mission, IBM-HBCU Quantum Center priorities, federal quantum initiatives, and the evolving quantum technology landscape.
• Build and sustain a diversified QISE research funding portfolio to support Center growth, including major proposals to federal agencies, foundations, industry partners, national laboratories, and philanthropic sponsors. Serve as Principal Investigator or co-Principal Investigator on externally funded research programs and support collaborative proposals involving Howard faculty, HBCU partner institutions, students, and external collaborators.
• Cultivate strategic partnerships with IBM, federal agencies, national laboratories, industry, foundations, HBCUs, minority-serving institutions, research universities, professional societies, and international quantum centers. Represent Howard University and the IBM-HBCU Quantum Center in state, national, and international forums.
• Lead workforce development and student training initiatives that prepare Howard and HBCU students for careers in quantum information science and engineering, including research experiences, internships, workshops, short courses, curriculum development, certificate programs, summer programs, hackathons, industry engagement, and graduate school pathways.
• Support translational and applied quantum research in areas such as quantum algorithms, quantum software, hybrid classical-quantum workflows, quantum sensing, quantum communication, quantum materials, optimization, cybersecurity, AI-enabled quantum systems, and other emerging applications.
• Lead center-scale, multi-investigator, and multi-institutional proposal development efforts, and strengthen partnerships with federal agencies, national laboratories, industry, foundations, HBCUs, MSIs, research universities, and international quantum centers.
• Develop a diversified funding portfolio that includes federal grants, industry partnerships, foundation support, philanthropic investment, and workforce development awards. Exercise Principal Investigator privileges to submit and lead externally funded proposals through Howard University, manage sponsored research awards, supervise research personnel, and direct Center-affiliated research activities consistent with university policy.
• Expand quantum research capacity at Howard University and across the IBM-HBCU Quantum Center network. Strengthen the Center's partnership with IBM and identify new opportunities for collaboration, training, hardware access, research engagement, and student professional development.
• Advance workforce development and talent pipelines that position Howard University and HBCUs as national leaders in quantum education and innovation. Recruit, mentor, and support faculty affiliates, research staff, postdoctoral researchers, graduate students, and undergraduate researchers.
• Oversee Center operations, budgets, reporting, compliance, communications, assessment, and strategic planning. Represent Howard University and the IBM-HBCU Quantum Center at national and international meetings, advisory boards, consortia, conferences, and public engagements. Promote a culture of research excellence, mentorship, inclusion, innovation, collaboration, and accountability.
• Perform other related duties assigned by the Principal Investigator, particularly those involving research training, mentoring, and interdisciplinary projects.
• Perform other related duties as assigned by the supervisor and Center PI.
CORE COMPETENCIES:
• A Ph.D. or equivalent terminal degree in engineering, computer science, physics chemistry, materials science, applied mathematics, or a closely related STEM field.
• A strong record of peer-reviewed high impact research and scholarship in quantum information science, quantum computing, quantum engineering, quantum sensing, quantum communication, quantum materials, quantum algorithms, quantum software, or a related area.
• Demonstrated ability to lead externally funded research as a Principal Investigator or major project leader.
• Evidence of national or international visibility in quantum science, engineering, computing, or technology.
• Experience building or leading interdisciplinary research teams, centers, institutes, large-scale projects, or multi-institutional collaborations.
• A record of mentoring undergraduate students, graduate students, postdoctoral researchers, early-career scientists, or junior faculty.
• Strong communication, organizational, and leadership skills.
• Demonstrated commitment to broadening participation in STEM and advancing the mission of Howard University as a leading historically Black research university.
• Ability to maintain confidentiality of information.
• Ability to work effectively in a team-oriented interdisciplinary environment.
MINIMUM REQUIREMENTS:
Applicants should have received a Ph.D. (or similar doctoral degree) in one of the following disciplines: Computer Science, Computer Engineering, Electrical Engineering, Physics, Chemistry, Mathematics, or similar STEM areas.
PREFERRED QUALIFICATIONS
• Preferred candidates will have experience leading quantum research or education programs at scale; developing center-level proposals; working with agencies such as NSF, DOE, DOD, NIST, NASA, NIH, or related sponsors; collaborating with industry and national laboratories; managing corporate research partnerships; and building multi-institutional HBCU or MSI research networks.
• Additional preferred experience includes work in applied or translational quantum computing; quantum software platforms; quantum algorithms; hybrid classical-quantum workflows; quantum sensing; quantum communications; quantum materials; cybersecurity; optimization; AI-enabled quantum systems; commercialization; technology transfer; entrepreneurship; or workforce development.
• Experience supervising center staff, managing budgets, supporting sponsored research compliance, developing strategic plans, and representing a major research center to external stakeholders is strongly preferred.
EXPECTED OUTCOMES:
A successful Scholar in Residence (Director) will be expected to:
• Strengthening Howard University's national and international leadership in quantum information science and engineering.
• Publish high-impact research articles in high impact venues.
• Grow externally funded research activity connected to the IBM-HBCU Quantum Center.
• Expand the participation of Howard and HBCU students in quantum research, internships, graduate training, and career pathways.
• Build a sustainable, diversified funding model for the Center.
• Increase the number and impact of HBCU faculty and student research collaborations in quantum science and engineering.
• Deepen IBM, federal, national laboratory, industry, foundation, and international partnerships.
• Position the IBM-HBCU Quantum Center as a premier national model for inclusive excellence in quantum research, education, and workforce development.
Compliance Salary Range Disclosure
$200,000-$250,000

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