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Proton Accelerator Jobs (NOW HIRING)

$150 - $200/hr

Advanced Technology and Proton Therapy Our clinical and research environment provides access to advanced imaging and radiation therapy technologies, including: * Image-guided linear accelerator

As the global leader in Proton Therapy, we've helped treat over 140,000 patients and deployed more than 700 particle accelerators across the globe. * Proton Therapy- delivering next‑generation ...

As the global leader in Proton Therapy, we've helped treat over 140,000 patients and deployed more than 700 particle accelerators across the globe. Our expertise spans four dynamic business lines:

As the global leader in Proton Therapy, we've helped treat over 140,000 patients and deployed more than 700 particle accelerators across the globe. Our expertise spans four dynamic business lines:

As the global leader in Proton Therapy, we've helped treat over 140,000 patients and deployed more than 700 particle accelerators across the globe. Our expertise spans four dynamic business lines:

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Proton Accelerator information

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$11

$19

$30

How much do proton accelerator jobs pay per hour?

As of Sep 9, 2026, the average hourly pay for proton accelerator in the United States is $19.82, according to ZipRecruiter salary data. Most workers in this role earn between $15.38 and $22.36 per hour, depending on experience, location, and employer.

What is a proton accelerator?

A proton accelerator is a type of particle accelerator specifically designed to accelerate protons, which are positively charged particles found in the nucleus of atoms. These machines use electric and magnetic fields to increase the speed and energy of protons, allowing them to collide with other particles or targets. Proton accelerators are essential tools in scientific research, medical treatments such as cancer therapy, and the production of certain medical isotopes. They come in various forms, including linear accelerators (linacs) and circular accelerators like synchrotrons and cyclotrons.

What are the key skills and qualifications needed to thrive as a proton accelerator operator?

To thrive as a Proton Accelerator Operator, you need a solid background in physics, engineering, or a related scientific field, often supported by a relevant degree or technical training. Familiarity with accelerator control systems, vacuum technology, RF systems, and radiation safety certifications are commonly required. Attention to detail, strong problem-solving abilities, and effective teamwork are crucial soft skills in this role. These competencies ensure the safe, efficient, and precise operation of complex accelerator equipment, which is vital for research or medical applications.

What are some typical challenges faced by professionals working with proton accelerators, and how can they be addressed?

Professionals working with proton accelerators often encounter challenges related to equipment maintenance, precise calibration, and complex safety protocols. Ensuring the accelerator operates at optimal performance requires strong problem-solving skills and close attention to detail due to the highly technical nature of the machinery. Collaboration with interdisciplinary teams, including physicists, engineers, and safety officers, is essential to quickly troubleshoot issues and maintain a safe working environment. Staying up-to-date with the latest technology and adhering to stringent safety guidelines can help professionals overcome these challenges and contribute effectively to research or medical applications.

What is the difference between Proton Accelerator vs Particle Accelerator Technician?

AspectProton AcceleratorParticle Accelerator Technician
Required CredentialsPhysics degree, specialized training in accelerator physicsTechnical diploma or associate degree, hands-on training in accelerator systems
Work EnvironmentResearch labs, medical facilities, or industrial settingsMaintenance and operation of accelerator equipment in labs or facilities
Industry UsageResearch, medical therapy, or industrial applicationsSupporting roles in accelerator operation and maintenance

The Proton Accelerator is a specialized device used primarily in research and medical fields, requiring advanced physics knowledge. In contrast, a Particle Accelerator Technician focuses on maintaining and operating various types of accelerators, including proton systems, often with technical training. Both roles are essential in the industry but differ mainly in their focus—design and research versus maintenance and support.

What other helpful pages are available for Proton Accelerator?

Other pages related to Proton Accelerator:

Infographic showing various Proton Accelerator job openings in the United States as of September 2026, with employment types broken down into 90% Full Time, 5% Part Time, and 5% Contract. Highlights an 82% Physical, 5% Hybrid, and 13% Remote job distribution, with an average salary of $41,222 per year, or $19.8 per hour.

High Power Laser & Particle Accelerator Postdoctoral Scholars

San Francisco, CA • On-site

Lawrence Berkeley National Laboratory
5 - 10K employees

$80 - $100/hr

Other

Posted 7 days ago


Key responsibilities

  • Assist with the design and execution of experiments to optimize laser plasma accelerator performance and related radiation applications.

  • Help maintain and develop operational procedures for multi-TW to PW class laser systems and study feedback control methods including AI/ML integration.

  • Assist with simulation studies to refine approaches for laser-plasma acceleration and high brightness electron beam production.


Lawrence Berkeley National Laboratory rating

9.5

Company rating: 9.5 out of 10

Based on 5 frontline employees who took The Breakroom Quiz

2nd of 121 rated laboratories


Job description

High Power Laser & Particle Accelerator Postdoctoral Scholars

In this role, you will help advance laser-plasma accelerator (LPA) technologies for generating high-energy particle beams, developing next-generation light sources, and enabling new radiation applications. Conducted under the direction and supervision of faculty mentors, you will investigate topics such as LPA stabilization, ultra-high-brightness electron beam production for free-electron lasers, AI/ML-based control systems, start-to-end simulations, radiation diagnostics, and proof-of-principle radiation experiments. You will also take part in BELLA-led and collaborative experimental campaigns, including those supported through the LaserNetUS and BeamNetUS networks, while gaining the research experience needed to build an independent academic or research career.

We're here for the same mission, to bring science solutions to the world. Join our team and YOU will play a supporting role in our goal to address global challenges! Have a high level of impact and work for an organization associated with 17 Nobel Prizes!

You will:

  • Assist with the design and execution experiments to optimize the performance of laser plasma accelerators, the particle & photon radiation pulses they produce, and novel applications that can be explored. This includes research on single-stage and multi-stage laser plasma acceleration of electrons, production of proton & muon beams, and generation of UV, EUV, X-ray, and gamma ray radiation.
  • Help maintain and develop rigorous operational procedures to ensure consistent and reliable operation of multi-TW to PW class laser systems.
  • Study and apply feedback control methods to stabilize amplified, ultrashort laser pulses and the radiation output they produce. Explore advanced control concepts, including machine learning and AI integration, for accelerator systems.
  • Assist with the execution of simulation studies to refine approaches to single-stage and multi-stage laser-plasma acceleration of relativistic electron beams.
  • Assist with the execution of simulation studies to refine approaches and identify novel schemes for producing and using high brightness electron beams for radiation production through mechanisms such as free-electron laser gain, plasma-based betatron emission, and Inverse Compton Scattering.
  • Work collaboratively with an interdisciplinary team of scientists, engineers and theorists to efficiently assist with the execution of the above tasks.
  • Document and communicate the results of work in reports and oral presentations, including participation in meetings, reviews, conferences and publications in refereed journals.

We are looking for:

  • PhD in Physics, Engineering, or a related field focused on accelerator physics, lasers, plasmas, or a closely related discipline.
  • Demonstrated experimental experience working in high power laser or particle accelerator facilities.
  • Demonstrated knowledge of standard equipment like motion controllers, pressure controllers, machine vision cameras, power supplies etc.
  • Demonstrated knowledge in one or more of the following: CPA laser systems, accelerator physics, plasma-based accelerators, and accelerator-based generation of secondary radiation (photons and particles).
  • Ability to work closely in a team with other scientists, postdocs, graduate students and technicians but also be self-driven.
  • Demonstrate good verbal and written communication skills.
  • Assist with the execution of regular experimental operations of multi-TW and PW-class laser systems.

Desired skills/knowledge:

  • Knowledge and experience with programming in Python and/or LabVIEW.

Additional information:

  • Appointment type: This is a full-time 2-year, postdoctoral appointment with the possibility of renewal based upon satisfactory job performance, continuing availability of funds and ongoing operational needs. You must have less than 3 years of paid postdoctoral experience. Salary for Postdoctoral positions depends on years of experience post-degree.
  • Salary range: This position is represented by a union for collective bargaining purposes. The salary range for this position is $5,756 - $9,136/month and is expected to start at $7,987/month or above based on a step schedule. Postdoctoral positions are paid on a step schedule per union contract and salaries will be predetermined based on postdoctoral step rates. Each step represents one full year of completed post-Ph.D. postdoctoral experience.
  • Background check: This position is subject to a background check. Any convictions will be evaluated to determine if they directly relate to the responsibilities and requirements of the position. Having a conviction history will not automatically disqualify an applicant from being considered for employment.
  • Work modality: Work will be primarily performed at: Lawrence Berkeley National Lab, 1 Cyclotron Road, Berkeley, CA. A REAL ID or other acceptable form of identification is required to access Berkeley Lab sites (for more information click here ).

Want to learn more about working at Berkeley Lab? Please visit: careers.lbl.gov

Equal Employment Opportunity Employer: The foundation of Berkeley Lab is our Stewardship Values: Team Science, Service, Trust, Innovation, and Respect; and we strive to build community with these shared values and commitments. Berkeley Lab is an Equal Opportunity Employer. We heartily welcome applications from all who could contribute to the Lab's mission of leading scientific discovery, excellence, and professionalism. In support of our rich global community, all qualified applicants will be considered for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, age, protected veteran status, or other protected categories under State and Federal law.

Misconduct Disclosure Requirement: As a condition of employment, the final candidate who accepts an offer of employment will be required to disclose if they have been subject to any final administrative or judicial decisions within the last seven years determining that they committed any misconduct; or have filed an appeal of a finding of substantiated misconduct with a previous employer. For additional information, click here .

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