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Beamline Scientist Jobs (NOW HIRING)

NY · On-site

$72.45 - $93.15/hr

FemtoMAX is an ultrafast beamline on the Short Pulse Facility (SPF) at MAX IV, utilizing ... You will join a team of scientists and research engineers who are developing the capabilities and ...

$179 - $218/hr

Serving as the senior technical authority for the ALS beamline and controls computing environment ... With a strong scientific reputation, expert staff, and advanced capabilities, the ALS attracts ...

NY · On-site

$110 - $190/hr

The successful candidate will work closely with the beamline scientists in order to understand their detector requirements and deliver the optimal detector performance for different experimental ...

Do Epic Science TAE is the world's first private fusion energy company, founded in 1998 to ... It has two types of the neutral beams - low energy NB (tens of keV, 5 MW per beamline), based on ...

Mechanical Engineer

Lemont, IL · On-site

$94K - $147K/yr

The BI Group works with APS beamline scientists and associated technical groups to provide engineering support for synchrotron radiation beamlines. The group contributes to the design, specification ...

Mechanical Engineer

Lemont, IL · On-site

$94K - $147K/yr

The BI Group works with APS beamline scientists and associated technical groups to provide engineering support for synchrotron radiation beamlines. The group contributes to the design, specification ...

Showing results 41-60

Beamline Scientist information

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$17

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$75

How much do beamline scientist jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for beamline scientist in the United States is $41.08, according to ZipRecruiter salary data. Most workers in this role earn between $27.64 and $51.92 per hour, depending on experience, location, and employer.

What is a beamline scientist?

Beamline Scientists are specialized researchers or engineers who operate and manage beamlines at synchrotron or neutron radiation facilities. They are responsible for maintaining the experimental equipment, assisting visiting researchers, developing new experimental techniques, and ensuring the quality and safety of experiments conducted on the beamline. Their work enables a wide range of scientific studies, including material science, biology, chemistry, and physics, by providing expertise in using high-intensity beams for advanced research. Beamline Scientists often collaborate closely with academic and industrial users to help them obtain the best possible data from their experiments.

What are the key skills and qualifications needed to thrive as a beamline scientist?

To thrive as a Beamline Scientist, you need a strong background in physics, materials science, or a related field, often supported by a PhD and experience with synchrotron radiation techniques. Proficiency with scientific instrumentation, data acquisition software, and programming languages like Python or MATLAB is commonly required. Excellent problem-solving, communication, and teamwork skills are essential for collaborating with multidisciplinary research teams and supporting external users. These abilities ensure effective experiment design, reliable data collection, and successful facilitation of cutting-edge scientific research.

What interdisciplinary collaborations is a beamline scientist involved in, and how do they shape daily work?

Beamline Scientists frequently work alongside physicists, chemists, biologists, and engineers to support and facilitate cutting-edge experiments at synchrotron facilities. This interdisciplinary collaboration involves providing technical expertise, assisting users with experimental setup, and troubleshooting equipment. Daily responsibilities often include coordinating with research teams, interpreting experimental results, and ensuring that the beamline operates efficiently and safely. These interactions not only expand scientific knowledge but also enhance the Beamline Scientist’s skills in communication, project management, and technical problem-solving.

What is the difference between Beamline Scientist vs Research Scientist?

AspectBeamline ScientistResearch Scientist
Required CredentialsTypically requires a PhD in physics, chemistry, or related fieldUsually holds a PhD in a scientific discipline
Work EnvironmentWorks at synchrotron or neutron facilities, operating beamlinesWorks in laboratories, universities, or research institutes across various fields
Employer & IndustryResearch institutions, national labs, synchrotron facilitiesUniversities, government agencies, private sector
Common Search/ComparisonOften compared for specialized beamline rolesBroader research roles in science and engineering

While both roles require advanced scientific degrees, a Beamline Scientist specializes in operating and maintaining beamline equipment at large-scale facilities, focusing on experimental setup and data collection. In contrast, a Research Scientist conducts broader scientific research across various environments. The roles overlap in credentials and research focus but differ in work setting and specific responsibilities.

How much do beamline scientists make?

Beamline scientists typically earn between $70,000 and $120,000 annually, depending on experience, education, and location. Salaries can increase with specialized skills, advanced degrees, and years of experience working in research facilities or laboratories with synchrotron or neutron sources.

How to become a beamline scientist?

To become a beamline scientist, typically a candidate needs a Ph.D. in physics, chemistry, materials science, or a related field, along with experience in synchrotron or neutron beam experiments. Skills in experimental design, data analysis, and familiarity with scientific instrumentation are essential, and positions often require knowledge of programming and data processing tools. Gaining experience through research projects or internships at research facilities can also improve job prospects.
More about Beamline Scientist jobs

What cities are hiring for Beamline Scientist jobs?

Cities with the most Beamline Scientist job openings:

What states have the most Beamline Scientist jobs?

States with the most job openings for Beamline Scientist jobs include:

Infographic showing various Beamline Scientist job openings in the United States as of August 2026, with employment types broken down into 1% Internship, 1% As Needed, 91% Full Time, 4% Part Time, and 3% Contract. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $85,452 per year, or $41.1 per hour.

Assistant Scientist - AI for Autonomous Synthesis and Multimodal Characterization

Argonne National Laboratory

Lemont, IL • On-site

$110 - $160/hr

Other

Re-posted 28 days ago


Job description

The Center for Nanoscale Materials (CNM) and the Advanced Photon Source (APS) at Argonne National Laboratory invite applications for a joint Assistant Scientist position focused on developing and applying artificial intelligence (AI) and machine learning (ML) methods for the autonomous, self-driving synthesis of nanoscale and quantum materials. This is an exciting opportunity to help shape a new generation of closed-loop, AI-enabled experimental workflows that tightly integrate synthesis within situ and operando x-ray, electron, and optical characterization. The successful candidate will help bridge CNM’s world‑class capabilities in nanofabrication and chemical synthesis with APS’s leading synchrotron measurement tools, enabling adaptive and autonomous exploration of complex materials design spaces.

  • Active learning and Bayesian optimization over synthesis parameters such as precursors, temperature, sequences, and pressure
  • Generative and inverse‑design models for materials discovery
  • Closed‑loop feedback frameworks that use in situ/operando scattering, spectroscopy, and imaging to guide synthesis in real time
  • AI‑enabled analysis of high‑throughput, multimodal experimental data with uncertainty quantification
  • Integration of edge computing, high‑performance computing (HPC), and scientific data infrastructure to support scalable, user‑facing autonomous workflows across CNM synthesis platforms and APS beamlines
Key Responsibilities
  • Lead and develop a research program in AI‑enabled autonomous materials synthesis
  • Design and implement closed‑loop experimental workflows that integrate synthesis, characterization, and decision‑making
  • Develop and apply AI/ML methods for active learning, optimization, inverse design, and experiment planning
  • Build analysis tools for multimodal, high‑throughput experimental data, including real‑time or near‑real‑time processing
  • Collaborate closely with scientists across materials synthesis, characterization, beamline science, theory, and computing
  • Contribute to the development of scalable computational and data workflows spanning edge, beamline, and HPC environments
  • Publish in peer‑reviewed journals, present at scientific meetings, and help shape future directions in autonomous materials research
Position Requirements

Ph.D. in physical chemistry, inorganic chemistry, computational materials science, chemical engineering, or a related field, along with 3–6 years of postdoctoral research experience.

  • A strong understanding of nanomaterials synthesis and/or in situ/operando x‑ray characterization (including scattering, spectroscopy, or imaging), with demonstrated experience connecting the two
  • Proven experience developing and applying AI/ML methods to autonomous experimentation, closed‑loop optimization, active learning, or inverse design
  • A strong publication record demonstrating innovation in AI/ML for materials synthesis, synchrotron experiments, or a closely related area
  • Experience with deep learning frameworks such as PyTorch, TensorFlow, or JAX
  • Experience with optimization and active‑learning libraries such as BoTorch, GPyTorch, or scikit‑learn
  • Strong programming skills, especially in Python, including integration with experimental control systems or lab‑automation frameworks
  • Ability to model Argonne’s core values of impact, safety, respect, integrity, and teamwork
Preferred Qualifications
  • Experimental control and orchestration frameworks such as ROS, Bluesky, or EPICS
  • Laboratory automation and robotic synthesis platforms
  • Generative models, reinforcement learning, or agentic AI approaches for materials discovery and experiment planning
  • Multimodal data fusion and real‑time data reduction for synchrotron or nanoscale experiments
  • High‑performance computing (HPC), edge‑to‑HPC workflows, and scientific data infrastructure
  • Digital twins, physics‑informed machine learning, or simulation‑augmented experiment design
  • Excellent written and verbal communication skills, with the ability to work effectively in a highly collaborative, multidisciplinary environment

As an equal employment opportunity employer, and in accordance with our core values of impact, safety, respect, integrity and teamwork, Argonne National Laboratory is committed to a safe and welcoming workplace that fosters collaborative scientific discovery and innovation. Argonne encourages everyone to apply for employment. Argonne is committed to nondiscrimination and considers all qualified applicants for employment without regard to any characteristic protected by law.

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