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Phd In Physics Jobs in Wisconsin (NOW HIRING)

PhD in Plasma Physics, or a related field + minimum of 3 years' experience in theoretical and computational plasma physics research. 2. Experience with computational model validation and uncertainty ...

PhD in Plasma Physics, or a related field + minimum of 3 years' experience in theoretical and computational plasma physics research. 2. Experience with computational model validation and uncertainty ...

MS or PhD in Materials Science, Engineering, Physics, or a related field (required) * 6-8 years of relevant industry experience * Experience with simulation tools such as Lorentz or COMSOL (preferred ...

MS or PhD in Materials Science, Engineering, Physics, or a related field (required) * 6-8 years of relevant industry experience * Experience with simulation tools such as Lorentz or COMSOL (preferred ...

... physics interactions. Develop and validate advanced analysis methodologies that support engine ... MS or PhD in Mechanical Engineering with emphasis in solid mechanics, vibrations, dynamics, finite ...

... physics interactions. Develop and validate advanced analysis methodologies that support engine ... MS or PhD in Mechanical Engineering with emphasis in solid mechanics, vibrations, dynamics, finite ...

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Phd In Physics information

See Wisconsin salary details

$11.1K

$61.7K

$95.4K

How much do phd in physics jobs pay per year?

As of Jul 23, 2026, the average yearly pay for phd in physics in Wisconsin is $61,732.00, according to ZipRecruiter salary data. Most workers in this role earn between $46,400.00 and $65,100.00 per year, depending on experience, location, and employer.

What is a PhD in Physics?

A PhD in Physics is the highest academic degree awarded in the field of physics. It involves several years of advanced coursework, independent research, and the completion of a dissertation that contributes original knowledge to the field. Earning a PhD prepares graduates for careers in academia, research, industry, and government, where they can apply their deep understanding of physical principles to solve complex problems. The process typically takes 4-6 years beyond a bachelor's or master's degree.

What are the common career paths available to someone with a PhD in Physics outside of academia?

A PhD in Physics opens doors to a wide range of career paths beyond academia, including roles in industry research and development, data science, finance, technology consulting, and government or national laboratories. Many physicists find rewarding careers in sectors like aerospace, energy, and healthcare, leveraging their problem-solving and analytical skills. Collaboration is often key, as you'll work with interdisciplinary teams of engineers, data analysts, and project managers. Transitioning into these roles may involve learning new tools or adapting to different team structures, but the foundational skills from your PhD are highly valued.

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

To thrive as a PhD in Physics, you need advanced knowledge of physical theories, strong analytical skills, and experience in research methodologies, typically supported by a doctoral degree in physics or a related field. Proficiency with data analysis tools (such as MATLAB or Python), laboratory equipment, and scientific publishing systems is commonly required. Critical thinking, problem-solving, and effective communication are crucial soft skills for presenting complex ideas and collaborating with multidisciplinary teams. These skills and qualities are essential for conducting impactful research, advancing scientific understanding, and succeeding in academic or industry settings.

What is the difference between Phd In Physics vs Physicist?

AspectPhd In PhysicsPhysicist
Required CredentialsDoctoral degree in PhysicsTypically a PhD in Physics or related field
Work EnvironmentResearch labs, universities, academiaResearch institutions, industry, academia
Industry UsageAcademic and research-focused rolesResearch, development, applied physics roles
Search & Comparison IntentUnderstanding academic qualificationsCareer options and job roles

In summary, a Phd In Physics is an academic qualification, while a Physicist is a professional working in research or industry. The Phd is necessary to become a Physicist, but not all Physicists hold a PhD. The roles often overlap in research environments, but the PhD emphasizes education, whereas Physicist roles focus on applying physics principles.

What are popular job titles related to Phd In Physics jobs in Wisconsin? For Phd In Physics jobs in Wisconsin, the most frequently searched job titles are:
What job categories do people searching Phd In Physics jobs in Wisconsin look for? The top searched job categories for Phd In Physics jobs in Wisconsin are:
What cities in Wisconsin are hiring for Phd In Physics jobs? Cities in Wisconsin with the most Phd In Physics job openings:
Infographic showing various Phd In Physics job openings in Wisconsin as of July 2026, with employment types broken down into 1% As Needed, 74% Full Time, 20% Part Time, and 5% Contract. Highlights an 94% Physical, 1% Hybrid, and 5% Remote job distribution, with an average salary of $61,732 per year, or $29.7 per hour.
Research Scientist

Other

Medical, Dental, Vision, Retirement, PTO

Posted 10 days ago


Job description

Join Realta Fusion and help shape the future of fusion energy through advanced theory and computation. As a Research Scientist, you'll bridge simulation and experiment to drive groundbreaking progress on our next-generation magnetic mirror devices.

Realta Fusion is a rapidly growing start-up developing compact magnetic mirror fusion energy systems to address the biggest challenge of our time - tackling global climate change while ensuring a sufficient energy supply for at least ten billion people on (and off) earth. We are building a team with diverse talents dedicated to making fusion energy a real solution to humanity's most pressing problem.

Position Summary

This Scientist will contribute to several theoretical and computational projects to advance the physics basis for the high-field axisymmetric magnetic mirror. This work will include validation of computational models with experimental data from the currently operating Wisconsin HTS Axisymmetric Mirror (WHAM) at the University of Wisconsin-Madison, proposing new experimental campaigns and plasma diagnostics to be fielded on WHAM to aid in validation efforts, and using computational modelling to guide the design of future axisymmetric mirror device at Realta Fusion called Hammir. This role will include participating in collaborations with external research groups at both national laboratories and universities, publishing work in peer-reviewed journals and disseminating results at conferences.

Responsibilities

1. Lead and participate in theoretical and computational projects to advance the physics basis for the axisymmetric mirror, with a focus on model validation.

2. Bridge experimental data analysis and modelling results for the purposes of high-fidelity model validation and uncertainty quantification.

3. Employ state-of-the-art computational models to understand and explain experimental observations & trends.

4. Conduct literature reviews, prepare reports and materials and disseminate information to appropriate entities.

5. Identify, write, or assist in developing grant opportunities, grant applications, proposals and other materials to secure funding in a startup-environment.

6. Publish and present results to advance research and ensure credibility for our work in the field of plasma physics & fusion energy.

7. Serve as an institutional subject matter expert and liaison with key internal and external stakeholders providing expert level information and representing the interests of a specialized research area.

8. Culture and Values: Foster a positive and inclusive work environment that aligns with the company's mission, values, and sustainability goals, promoting innovation, collaboration, and employee engagement.

Required Qualifications

1. Education: PhD in Plasma Physics, or a related field + minimum of 3 years' experience in theoretical and computational plasma physics research.

2. Experience with computational model validation and uncertainty quantification.

3. Strong familiarity with experimental plasma diagnostics (e.g. bolometers, electrostatic ion energy analyzers, interferometers, magnetic measurements) and analysis techniques.

4. Understanding of magnetically confined fusion plasma heating and technologies, such as bias-induced rotation, electron cyclotron heating, neutral beam injection, and RF heating.

5. Collaboration: Exceptional interpersonal and communication skills (written and verbal) to collaborate effectively with colleagues, external partners, and stakeholders.

6. Demonstration of innovation capacity through IP generated and/or publications in the field.

Compensation & Benefits

What we are working on is hard... and hugely important. Realta Fusion is assembling a talented team bound together by a passion to solve humanity's biggest challenge with first-of-a-kind technology.

Additionally, Realta offers:

  • Competitive compensation package, including equity stock options
  • Comprehensive benefits including health, dental, and vision insurance, plus a 401(k)
  • Flexible paid time off (PTO) to support work-life balance
  • Work and live in Madison, Wisconsin - one of America's most livable and vibrant cities

We value diversity as a critical factor in innovation and believe a diverse team is necessary to solve the toughest problems. We aim to create an inclusive environment that unleashes the full creativity of our team members from a wide variety of backgrounds and experiences. We provide equal employment opportunities to all individuals based on merit and without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, veteran status, or any other protected status under applicable laws.