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Home Based Computational Physicist Jobs (NOW HIRING)

Collaborate cross-functionally with engineering teams to provide physics-based insights that inform ... PhD in Plasma Physics, Computational Physics, Nuclear Engineering, or a related field * Strong ...

Prepare technical reports, presentations, and publications based on simulation results and ... PhD in Plasma Physics, Computational Physics, Applied Physics, or a related field, or master ...

Prepare technical reports, presentations, and publications based on simulation results and ... PhD in Plasma Physics, Computational Physics, Applied Physics, or a related field, or master ...

Responsibilities The physicist will perform scientific analysis and computational modeling to ... Work with software engineers to implement physics-based analysis models into maintainable software ...

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How much do home based computational physicist jobs pay per year?

As of Jun 23, 2026, the average yearly pay for home based computational physicist in the United States is $168,844.00, according to ZipRecruiter salary data. Most workers in this role earn between $155,500.00 and $182,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Home Based Computational Physicist, and why are they important?

To thrive as a Home Based Computational Physicist, you need a strong background in physics, advanced mathematical modeling, and a graduate degree (often a Ph.D.) in physics or a related field. Proficiency with scientific programming languages (such as Python, C++, or Fortran), high-performance computing environments, and familiarity with simulation software are typically required. Excellent problem-solving skills, self-motivation, and effective remote communication are essential soft skills in this role. These skills and qualities are crucial for conducting independent research, producing accurate simulations, and collaborating effectively with remote teams or clients.

What does a Home Based Computational Physicist do?

A Home Based Computational Physicist uses computer simulations, mathematical models, and computational techniques to solve physical problems while working remotely. Their work may involve studying phenomena such as fluid dynamics, materials science, or quantum mechanics by programming and running simulations on powerful computers. They often collaborate with research teams virtually, analyze data, and publish their findings, all from a home office. This role requires strong skills in physics, mathematics, and computer programming.

What are some common challenges faced by home-based computational physicists, and how can they be addressed?

Home-based computational physicists often encounter challenges such as staying connected with research teams, managing project timelines independently, and ensuring access to necessary computational resources. To overcome these, it's important to establish regular virtual meetings with collaborators, use project management tools to track progress, and leverage cloud-based computing platforms for simulations and data analysis. Building a structured daily routine and participating in online scientific communities can also help maintain motivation and professional growth.
More about Home Based Computational Physicist jobs
What cities are hiring for Home Based Computational Physicist jobs? Cities with the most Home Based Computational Physicist job openings:
What are the most commonly searched types of Computational Physicist jobs? The most popular types of Computational Physicist jobs are:
What states have the most Home Based Computational Physicist jobs? States with the most job openings for Home Based Computational Physicist jobs include:
What job categories do people searching Home Based Computational Physicist jobs look for? The top searched job categories for Home Based Computational Physicist jobs are:
Infographic showing various Home Based Computational Physicist job openings in the United States as of June 2026, with employment types broken down into 2% Locum Tenens, 2% Internship, 94% Contract, and 2% Nights. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution, with an average salary of $168,844 per year, or $81.2 per hour.

Computational Physicist

Type One Energy

Madison, WI โ€ข On-site

Full-time

Retirement

This job post hasย expired today.ย Applications are no longer accepted.


Job description

Join us in our mission to commercialize fusion energy
About Type One Energy
Type One Energy Group is mission-driven to provide sustainable, affordable fusion power to the world. Established in 2019 and venture-backed in 2023, the company is led by a team of globally recognized fusion scientists with a strong track record of building state-of-the-art stellarator fusion machines, together with veteran business leaders experienced in scaling companies and commercializing energy technologies.
If you are searching for the best new ideas and share our vision, join us as a ". This is what you need to know:
Location: Knoxville TN, Madison WI or Vancouver BC
Salary: Highly Competitive Plus Benefits
Contract: Permanent, full time
Reporting to: Senior Director of Physics Analysis
Your role in the mission:
Type One Energy is seeking Computational Physicists to contribute to the development of high-fidelity models and simulations supporting stellarator design and operation. These roles will focus on predictive modeling of plasma behavior across core, edge, and boundary regions, enabling data-driven design decisions and advancing fusion performance.
This is an opportunity to work at the intersection of theory, simulation, and engineering, contributing directly to the realization of commercial fusion energy.
You will work closely with Engineers and Scientists and will also be responsible for:
  • Developing and execute integrated modeling frameworks to simulate and predict plasma operational scenarios
  • Performing plasma profile and fusion performance predictions using gyrokinetic turbulence simulations and reduced models
  • Contribute to the development and validation of simulation tools for divertor and boundary plasma physics
  • Support integrated core-edge modeling and analysis to evaluate plasma performance and stability
  • Model a range of plasma phenomena, including:
    • Neoclassical transport
    • Energetic particle transport
    • Plasma-neutral interactions and boundary physics
    • MHD equilibrium and stability
    • Pellet fueling
    • Electron cyclotron heating (ECH)
  • Collaborate cross-functionally with engineering teams to provide physics-based insights that inform system design and optimization
  • Analyze simulation outputs and experimental data to validate models and improve predictive capability
  • Document findings through technical reports, presentations, and peer-reviewed publications

What you'll need:
  • PhD in Plasma Physics, Computational Physics, Nuclear Engineering, or a related field
  • Strong background in plasma physics theory and numerical simulation methods
  • Experience with one or more of the following:

Gyrokinetic simulation codes
MHD equilibrium and stability tools
Edge/divertor modeling simulation code experience
Integrated modeling codes
  • Proficiency in scientific programming (e.g., Python, C++, Fortran) and high-performance computing (HPC) environments
  • Experience with data analysis and visualization tools
  • Demonstrated ability to work in collaborative, multidisciplinary teams

Preferred Qualifications
  • Experience with stellarator physics and optimization
  • Familiarity with core-edge coupling and integrated simulation workflows
  • Prior involvement in fusion experiments or large-scale simulation projects
  • Track record of peer-reviewed publications in relevant fields

We offer:
In addition to a basic salary and yearly bonus, you will also get...
  • A hybrid work policy
  • Stock options
  • Relocation allowance
  • Insurance plans
  • Retirement options
  • And many more great voluntary benefits

Type One Energy applies proven advanced manufacturing methods, modern computational physics and high-field superconducting magnets to develop its optimized stellarator fusion energy system. Our FusionDirect development program pursues the lowest-risk, shortest-schedule path to a fusion power plant over the coming decade, using a partner-intensive and capital-efficient strategy.
Type One Energy is committed to community engagement in the development and deployment of its clean energy technology. For more information, visit www.typeoneenergy.com or follow us on LinkedIn.
Equal Opportunity Statement
Type One Energy is an equal opportunity employer. We value diversity, searching for the best new ideas and remaining open to unique perspectives. Therefore, all qualified applicants will receive consideration for employment independent of race, color, religion, sex, sexual orientation, gender identity, national origin, disability or veteran status, age, or any other characteristics protected by applicable federal, state, or local laws. All qualified individuals are encouraged to apply.