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Quantum Professor Jobs in Oak Ridge, TN (NOW HIRING)

Quantum Professor information

See Oak Ridge, TN salary details

$55.5K

$109.7K

$180.7K

How much do quantum professor jobs pay per year?

As of Aug 30, 2026, the average yearly pay for quantum professor in Oak Ridge, TN is $109,746.00, according to ZipRecruiter salary data. Most workers in this role earn between $90,300.00 and $116,200.00 per year, depending on experience, location, and employer.

What is a quantum professor?

Quantum Professors are academic professionals who specialize in the study, research, and teaching of quantum mechanics and related fields such as quantum computing, quantum information science, or quantum physics. They typically hold advanced degrees (usually a PhD) and work at universities or research institutions, conducting experiments, publishing papers, and instructing undergraduate and graduate students. Their work often contributes to advancements in technology and our understanding of the fundamental principles of the universe.

What are the key skills and qualifications needed to thrive as a quantum professor?

To thrive as a Quantum Professor, you need an advanced degree (typically a PhD) in physics or a related field, with deep expertise in quantum mechanics and research experience. Familiarity with quantum simulation software, programming languages such as Python or MATLAB, and experience publishing in peer-reviewed journals are typically required. Strong communication, mentorship skills, and the ability to inspire and engage students set outstanding professors apart. These skills are crucial for advancing research, effectively teaching complex concepts, and fostering the next generation of quantum scientists.

What are some typical challenges quantum professors face in balancing research, teaching, and developing new course material?

Quantum Professors often juggle multiple demanding responsibilities, including conducting advanced research, publishing papers, mentoring graduate students, and developing or updating curriculum to reflect rapidly evolving quantum science. Staying current with breakthroughs in the field while ensuring students receive clear, foundational instruction can be challenging. Collaboration with interdisciplinary teams and securing research funding also require strong time management and communication skills. However, these challenges provide unique opportunities for professional growth and leadership in cutting-edge scientific discovery.

What is the difference between Quantum Professor vs Quantum Research Scientist?

AspectQuantum ProfessorQuantum Research Scientist
Required CredentialsPhD in Physics or related field, academic credentialsPhD in Physics, Engineering, or related field, specialized certifications
Work EnvironmentUniversities, academic institutions, research labsResearch labs, corporate R&D departments, government agencies
Employer & Industry UsageHigher education, academia, research institutionsPrivate companies, government labs, industry-focused research
Common Search & ComparisonAcademic roles, teaching, research in quantum physicsApplied research, product development, industry innovation

The main difference between a Quantum Professor and a Quantum Research Scientist lies in their work environment and focus. Quantum Professors primarily work in academia, teaching students and conducting fundamental research. Quantum Research Scientists often work in industry or government labs, focusing on applied research and product development. Both roles require advanced degrees, but their career paths and daily tasks differ significantly.

How much do quantum professor professors make?

Quantum professors, typically university faculty or researchers in quantum physics, earn salaries ranging from $70,000 to over $150,000 annually depending on experience, education, and institution. Senior or tenured professors with extensive research backgrounds can earn higher salaries, often supplemented by research grants and consulting opportunities.

How to become a quantum professor?

To become a quantum professor, one typically needs a Ph.D. in physics, quantum mechanics, or a related field, along with extensive research experience and a strong publication record. Academic positions often require postdoctoral research, teaching experience, and expertise in quantum theory, computational tools, and experimental methods. Building a professional network and applying for faculty positions at universities or research institutions are essential steps.

What are popular job titles related to Quantum Professor jobs in Oak Ridge, TN?

For Quantum Professor jobs in Oak Ridge, TN, the most frequently searched job titles are:

What job categories do people searching Quantum Professor jobs in Oak Ridge, TN look for?

The top searched job categories for Quantum Professor jobs in Oak Ridge, TN are:

What cities near Oak Ridge, TN are hiring for Quantum Professor jobs?

Cities near Oak Ridge, TN with the most Quantum Professor job openings:

Infographic showing various Quantum Professor job openings in Oak Ridge, TN as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $109,746 per year, or $52.8 per hour.

Post-Doctoral Research Associate: Department of Physics and Astronomy - UTK

Knoxville, TN

The University of Tennessee
Colleges, Universities, and Professional Schools • 1 - 5K employees

$2.5K/wk

Full-time

Re-posted 29 days ago


Job description

We are seeking a highly motivated Computational Researcher to join the Del Maestro group at the University of Tennessee, Knoxville to work on challenging problems in quantum materials at the interface of condensed matter, quantum chemistry, and materials science and engineering. The candidate will utilize advanced computational methods on high-performance computing infrastructure including classical and quantum Monte Carlo, molecular dynamics, and ab initio methods. 

The University of Tennessee, Knoxville, has shaped leaders, changemakers, and innovative thinkers since its founding in 1794. The university is home to more than 38,000 students and 10,000 statewide employees-the Volunteers-who uphold the university's tradition of lighting the way for others through leadership and service. 

UT Knoxville offers over 900 programs of study across 14 degree-granting colleges and schools. As Tennessee's flagship land-grant university, its footprint spans the entire state. The university holds the highest Carnegie classification for research activity and has deep partnerships with industry leaders and the US Department of Energy's largest multidisciplinary laboratory, Oak Ridge National Laboratory. 

The Knoxville campus serves and recruits for UT Knoxville, including the Institute of Agriculture and the Space Institute, as well as the UT Institute of Public Service.  

UT Knoxville considers its employees its number one asset. With values that focus on work-life balance, compensation, and innovation leadership, all Vols are supported to advance professionally. Employees have access to career development and coaching, continued education, and an extensive list of development and training possibilities. The Volunteer employee experience implements structures and practices to attract and retain top-tier talent, fostering a strong staff community and supporting a culture of involvement and engagement for everyone. 

The university holds a strong commitment to its land-grant mission of learning and engagement, with a tradition of service and leadership that carries that Volunteer spirit throughout the state and around the world. It has been ranked nationally as "Best Employer for New Graduates," "One of America's Best Large Employers," and "Best Workplace for Women," and has been designated as "Best Place for Working Parents" by Forbes Magazine.  

Apply today and join the Tennessee Volunteer community! 

Required Qualifications

  • Education: Ph.D. in physics, chemistry, materials science, or a closely related field completed no later than 08/01/2026.
  • Experience: 
    • An excellent track record of productive and creative research demonstrated by publications in peer reviewed journals.
    • Strong verbal and writing skills. 
    • Demonstrated ability to work independently and collaboratively with team members, including experimental collaborators.
    • Familiarity with atomistic (e.g. molecular dynamics, Monte Carlo) and/or ab initio (e.g. density functional theory) computational tools.

  • Knowledge, Skills, Abilities: 
    • High performance computing (e.g. slurm or other workload managers).
    • Must be a U.S Citizen and be able to obtain and maintain a U.S security clearance.

Preferred Qualifications

  • Experience: Research experience in artificial intelligence for quantum systems/materials.

Work Location 

  • University of Tennessee, Knoxville
  • Onsite

Compensation and Benefits

  • Anticipated hiring range: $65,000
  • Maximum moving allowance: $2,500
  • Find more information on UT Benefits here

Application Instructions

For best consideration applicants should submit the below materials before August 1, 2026:

  • Cover Letter
  • Full CV including list of publications
  • 2-3 letters of recommendation with a preference for 1 from current supervisor sent directly to Prof. Del Maestro at qm_postdoc@tennessee.edu.

Review of applications will begin immediately and continue until the position is filled. 
 

About The Department

The Department has an exemplary research record, with eight professors earning NSF CAREER awards since 2012, eight professors among the world's top two percent of physicists based on citation count, the award of the prestigious American Physical Society 2021 Bonner Prize, eleven APS Fellows, and four AAAS Fellows. The University of Tennessee, Knoxville is Tennessee's flagship state research institution, a campus of choice for outstanding undergraduates and a premier graduate institution with a number of nationally and internationally ranked programs and with national and international leadership in numerous fields.

The successful applicant will work with Prof. Del Maestro and his team to:

  • Utilize advanced computational frameworks to model complex physical interactions and transport phenomena.
  • Simulate materials and account for fundamental physical effects under a range of environmental conditions.
  • Leverage modern computational techniques, including data-driven and machine learning models, to accurately represent atomic-level interactions and behaviors.
  • Analyze large-scale simulation data to extract key dynamic properties, and material performance metrics.
  • Work with, validate, and help maintain proprietary in-house software tools and computational infrastructure.
  • Collaborate with team members to apply specialized expertise toward solving complex modeling challenges.
  • Ensure compliance with environment, safety, health and quality program requirements.
  • Maintain strong commitment to the implementation and perpetuation of values and ethics in scientific research.