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Plasma Engineering Jobs in Wisconsin (NOW HIRING)

Flex Operator I

Sturtevant, WI · On-site

$16.50 - $20.50/hr

... plasma cutting tables, robotic welders, and polishing machines, based on production needs. * Read and interpret engineering blueprints, schematics, and work orders to determine appropriate machine ...

Phlebotomist

Wausau, WI · On-site

$18.25 - $22.75/hr

... support plasma center operations. How you will contribute: You will greet donors as they enter and exit the donor floor. You will perform venipuncture of donors and programming of plasmapheresis ...

Biolife Medical Screening

Wausau, WI · On-site

$18.25 - $22.75/hr

... to support plasma center operations. How You Will Contribute · You will greet donors as they enter and exit the donor floor. · You will perform venipuncture of donors and programming of ...

New

Phlebotomist

Wausau, WI · On-site

$18.25 - $22.75/hr

... support plasma center operations. How you will contribute: • You will greet donors as they enter and exit the donor floor. • You will perform venipuncture of donors and programming of ...

Showing results 41-60

Plasma Engineering information

See Wisconsin salary details

$13

$31

$57

How much do plasma engineering jobs pay per hour?

As of Aug 21, 2026, the average hourly pay for plasma engineering in Wisconsin is $31.85, according to ZipRecruiter salary data. Most workers in this role earn between $20.38 and $38.32 per hour, depending on experience, location, and employer.

What is plasma engineering?

A Plasma Engineering job involves the study, design, and application of plasma—ionized gases with unique electrical properties. Plasma engineers work in industries such as aerospace, semiconductors, energy, and materials processing, developing technologies like plasma cutting, propulsion systems, and fusion energy. They apply principles of physics, electromagnetism, and fluid dynamics to create and optimize plasma-based systems. The role often requires expertise in simulations, diagnostics, and experimental techniques.

What are the typical daily tasks and work environments for plasma engineering professionals?

Plasma Engineering professionals often split their time between laboratory settings, where they conduct experiments and operate plasma-generating equipment, and office environments, where they analyze data and develop designs or process improvements. Daily tasks can include calibrating and maintaining equipment, running simulations, interpreting results, and preparing technical reports. Collaboration is frequent, especially with material scientists, mechanical engineers, and production teams, to optimize plasma processes for applications like semiconductor manufacturing or materials coating. The work environment is typically fast-paced and innovative, providing opportunities to contribute to cutting-edge technologies and cross-functional projects.

What are the key skills and qualifications needed to thrive in plasma engineering, and why are they important?

To thrive as a Plasma Engineer, you should have a strong background in physics or engineering, with expertise in plasma physics, materials science, and advanced mathematics, typically supported by at least a bachelor's or master's degree in a related field. Familiarity with plasma simulation software, laboratory diagnostic tools, and certifications in safety protocols for working with high-voltage or vacuum systems are often required. Analytical thinking, problem-solving abilities, and effective teamwork and communication skills will help you excel in diverse research or manufacturing environments. These competencies are vital for designing safe and efficient plasma processes, troubleshooting technical challenges, and collaborating on multidisciplinary projects.

How much do plasma engineers make?

Plasma engineers typically earn a median annual salary between $70,000 and $110,000, depending on experience, education, and location. Advanced skills in plasma physics, engineering tools, and certifications can lead to higher compensation, especially in research or industrial settings.

What do plasma engineers do?

Plasma engineers design, develop, and maintain systems that generate and control plasma for applications such as manufacturing, research, and energy production. They work with specialized equipment, analyze plasma behavior, and ensure safety protocols are followed in laboratory or industrial environments. Strong knowledge of physics, materials science, and technical skills are essential for this role.

What are popular job titles related to Plasma Engineering jobs in Wisconsin?

For Plasma Engineering jobs in Wisconsin, the most frequently searched job titles are:

What job categories do people searching Plasma Engineering jobs in Wisconsin look for?

The top searched job categories for Plasma Engineering jobs in Wisconsin are:

Infographic showing various Plasma Engineering job openings in Wisconsin as of August 2026, with employment types broken down into 91% Full Time, 5% Part Time, 3% Contract, and 1% Nights. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $66,238 per year, or $31.8 per hour.

Senior Theoretical & Computational Scientist

Realta Fusion Inc.

Madison, WI • On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 3 days ago


Job description

Define the physics foundation powering the next generation of high-field magnetic mirror fusion. The Senior Theoretical & Computational Scientist will both lead and 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 leading and participating in collaborations with external research groups at both national laboratories and universities, publishing work in peer-reviewed journals and disseminating results at conferences.

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.

Responsibilities

  1. Develop complex research methodologies and procedures to identify solutions in a magnetic mirror fusion research device and optimize the design of Realta’s next fusion devices.
  2. Lead and participate in several theoretical and computational projects to advance the physics basis for the axisymmetric mirror, with a focus on validation and then extrapolative design to future devices.
  3. Interface with the experimental physics, engineering and business leadership teams to deliver technical milestones.
  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. 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.
  7. Contribute to the establishment of company safety standards and implement these standards within the R&D team.
  8. 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 5 years’ experience in theoretical and computational plasma physics research.
  2. Extensive experience with MHD equilibrium and linear stability calculations, and Extended-MHD / multi-fluid plasma simulations with codes such as NIMROD or JOREK.
  3. Familiarity with Fokker-Planck, particle-in-cell (PIC) and RF heating simulation tools, such as WarpX, VPIC, Genray, AORSA, CQL3D.
  4. Basic knowledge of standard plasma diagnostics (e.g. bolometers, electrostatic ion energy analyzers, interferometers, magnetic measurements) and analysis techniques.
  5. Understanding of magnetically confined fusion plasma heating and current drive technologies, such as bias-induced rotation, electron cyclotron heating, neutral beam injection and RF heating.
  6. Collaboration: Exceptional interpersonal and communication skills (written and verbal) to collaborate effectively with colleagues, external partners, and stakeholders.
  7. 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.

We encourage applicants who don't meet all the criteria but believe they can thrive in this role to apply