Fusion Plasma Physicist - Diagnostics & Fast-Ion Transport
Thea Energy
Company Overview
Thea Energy, originally known as Princeton Stellarators Inc.
HeadquartersPrinceton, New Jersey, United States
Founded2022
SizeEmployee count and revenue figures for 2023 or later remain undisclosed publicly, though it operates as a private fusion startup with funding from the U.S. Department of Energy's Milestone-Based Fusion Development Program as one of eight recipients (source: pppl.gov).
What They Do
Thea Energy focuses on advancing fusion energy through innovative stellarator designs, utilizing arrays of planar high-temperature superconducting (HTS) coils to achieve stable magnetic confinement. This approach simplifies the traditional complex 3D modular magnets found in conventional stellarators, allowing for more efficient and effective fusion energy production (source: fusionxinvest.com). Their flagship system, named Eos after the Greek goddess of dawn, is designed to produce neutrons for tritium breeding, which is essential for validating their technology and enabling future commercial applications, such as steady-state fusion power plants (source: heatmap.news). The company's technology leverages modern computing power and HTS materials to optimize designs, providing inherent steady-state stability that mitigates disruptions commonly associated with tokamaks (source: thea.energy). Their target markets primarily include commercial fusion energy developers, with an initial focus on neutron sources for industrial applications, although specific customer segments have not been detailed (source: fusionxinvest.com). A key differentiator for Thea Energy is its rapid in-house manufacturing capabilities, which utilize tools like a CNC machine and a specialized device named "Zeus" for winding HTS tape, allowing for quick iterations and reducing reliance on outsourced labor (source: heatmap.news).
Projects & Track Record
As of now, Thea Energy has not completed any projects, as it is still in the early stages of development focused on prototyping its Eos system. This system is intended to serve as the first demonstrator for neutron and tritium production, but specific completion dates, capacity specifications, or project locations have not been reported (source: fusionxinvest.com). The company is actively engaged in building and testing planar HTS coil prototypes at its facility in Kearny, New Jersey, which is equipped with an open office space, laboratory, and small-scale manufacturing capabilities for magnet arrays (source: heatmap.news). Thea Energy's origins at the Princeton Plasma Physics Laboratory (PPPL) provide it with strong partnerships and a foundation in stellarator research, with co-founder David Gates being a notable physicist and Edison Patent Award winner for his contributions to the field (source: pppl.gov). Currently, the geographic presence of Thea Energy is limited to New Jersey, and there have been no announcements regarding expansion, although the location benefits from proximity to significant fusion research hubs in the Northeast, including PPPL and Columbia University (source: heatmap.news).
Recent Developments
In 2023, prior to its rebranding, Princeton Stellarators Inc. received funding from the U.S. Department of Energy's Milestone-Based Fusion Development Program, which supports advancements in stellarator technology toward commercialization (source: pppl.gov). However, there have been no reported contracts, acquisitions, mergers, or additional funding rounds in the last two years, as the company focuses on proprietary breakthroughs without public milestones or awards beyond Gates' personal Edison Patent (source: thea.energy). Thea Energy's website encourages subscription updates but does not list any recent press releases regarding major announcements, indicating a relatively quiet period in terms of public communications (source: thea.energy).
Working There
Information about working at Thea Energy is limited, but it appears to be suitable for job seekers interested in a small, early-stage fusion startup environment. Roles likely encompass engineering positions focused on magnet design, HTS winding, and CNC manufacturing, as well as physics research and operational roles, inferred from the facility's mix of open desks, lab work, and prototype building (source: heatmap.news). Hiring seems to be concentrated at the New Jersey site, with no remote or other location postings documented (source: fusionxinvest.com). The company culture appears to blend the agility of a tech startup with the practicalities of a laboratory environment, emphasizing local unionized labor for scalability and rapid prototyping, rather than relying on elite academic talent, all within a space that prioritizes manufacturing efficiency (source: heatmap.news). However, no documented benefits, salary data, or employee testimonials are available in public sources.
Last updated on Feb 23, 2026 | Report an issue
Job Description
Thea Energy is leveraging recent breakthroughs in stellarator physics and engineering to create a faster and simpler approach to commercializing fusion energy. The company is reinventing the stellarator using computer-controlled arrays of planar coils thereby replacing the intricate, complex modular magnets required in all other stellarator architectures. Thea Energy is on a mission to create a limitless source of zero emission energy for a sustainable future.
We are seeking a highly motivated and skilled Experimental Plasma Physicist to join our research team. In this role, you will design, deploy, and plan operation of cutting-edge plasma diagnostics, spearhead experimental campaigns focused on fast-ion transport dynamics and actively collaborate with external academic and national laboratory partners.
Key Responsibilities
- Design, build, and calibrate advanced plasma diagnostics (e.g., optical emission spectroscopy, laser-based diagnostics, probes, fast-ion loss detectors) tailored to Eos stellarator magnetic configurations.
- Oversee vacuum system integration, high-magnetic-field hardware setup, and signal processing chains.
- Maintain and upgrade diagnostic hardware to ensure reliable, high-resolution data acquisition during experimental runs.
- Design and develop experimental campaigns targeting fast-ion transport, wave-particle interactions, and confinement physics.
- Formulate experimental proposals, set operational parameters, and execute run plans on experimental plasma facilities.
- Analyze complex multi-diagnostic datasets using Python, MATLAB, or modern scientific software to extract physical parameters (e.g., density profiles, velocity distributions, and fluctuation spectrums).
- Serve as a key liaison to external entities, including academic institutions, national laboratories, and international research consortia.
- Co-author peer-reviewed journal articles and represent the organization at major conferences (e.g., APS Division of Plasma Physics).
- Mentor graduate students, junior researchers, and intern cohorts in laboratory safety, experimental protocols, and data analysis pipelines.
Required Experience & Skillsets
- Education: Ph.D. in Plasma Physics, Fusion Science, Applied Physics, or a closely related engineering/scientific discipline.
- Experimental Track Record: Proven hands-on experience working in a plasma physics laboratory setting (e.g., low-temperature magnetized plasma, dusty plasma, or magnetic confinement fusion devices).
- Diagnostics Expertise: Demonstrated experience developing, operating, or analyzing data from plasma diagnostics (spectroscopy, Langmuir/Emissive probes, fast camera imaging, or particle detectors).
- Data Analysis & Modeling: Proficiency with quantitative data analysis tools (Python, MATLAB, Julia) and familiarity with transport modeling software or synthetic diagnostic codes.
- Communication & Teamwork: Strong verbal and written communication skills with a proven track record of cross-institutional scientific collaboration.
Preferred / Desirable Qualifications
- Experience with strongly magnetized plasma environments (e.g., tokamaks, stellarators, superconducting magnet facilities or high-field discharge systems).
- Background in fast-ion loss modeling or validation of fast-ion diagnostic synthetic models.
- Active involvement in scientific outreach, or mentoring programs.
Company Benefits
- Salary range $100,000 - $120,000
- Comprehensive health benefits (e.g. medical/dental/vision)
- Employee equity stock options
- 20 days PTO
It's not necessary to meet all of the skillsets outlined above. Please feel free to send us a note and tell us why you would still be a great fit for this role or Thea Energy.
Diversity and Inclusion
Thea Energy is an equal opportunity employer committed to creating a company of diverse backgrounds. By creating a diverse environment, we will bring new ideas and approaches to solving some of the world's hardest (and most important) problems. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, gender, sexual orientation, gender identity or expression, national origin, family or marital status, age, disability, veteran's status, or other characteristic protected by applicable laws and regulations.
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.
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About the role
August 11, 2026
August 17, 2026
Full time
On-site
Company
US$100,000–120,000 annually
- Kearny, New Jersey, United States
Ph.D. required with proven hands-on experience in plasma physics laboratory settings.
UTC-04:00