Laser Plasma Diagnostic Specialist

Focused Energy Inc

$100K — $120K *
Energy & Utilities
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Ph.D. in Physics, Plasma Physics, Optical Engineering, or related field.
  • 2-8 years experience in laser-plasma diagnostics development or operation.
  • Expertise in optical diagnostics, X-ray diagnostics, charged-particle diagnostics, or nuclear diagnostics.
  • Strong understanding of experimental optics, precision instrumentation, and vacuum systems.
  • Proficient in data analysis with Python, MATLAB, or similar software.

Responsibilities

  • Design, develop, and commission diagnostics for high-energy-density physics.
  • Support diagnostics across optical, X-ray, charged-particle, and nuclear measurements.
  • Define diagnostic requirements for experimental campaigns.
  • Collaborate with engineers to operationalize diagnostic concepts.
  • Assist with alignment, calibration, and experimental operations.
  • Analyze experimental data to assess diagnostic performance.
  • Contribute to technical documentation and experimental planning.

Benefits

  • Opportunity to work on cutting-edge fusion energy technology.
  • Collaborative environment with multidisciplinary teams.
  • Engagement with external academic and research institutions.
  • Access to advanced experimental facilities in innovative fields.
Full Job Description
About The Role

We are seeking a highly motivated and innovative Laser-Plasma Diagnostic Specialist to join our Experimental Physics team. This role is central to advancing Focused Energy's mission to realize commercial laser-driven fusion power. You will contribute to the development, integration, and deployment of advanced diagnostics for inertial fusion energy (IFE) experiments, enabling the characterization of laser-plasma interactions, target performance, and fusion-relevant physics.

Working alongside physicists, optical, mechanical, electrical, controls, and software engineers, you will help design and commission state-of-the-art diagnostic systems spanning optical, X-ray, charged-particle, and nuclear measurements. Your work will directly support the development of next-generation fusion facilities and provide critical experimental data that guides technology development and scientific discovery.

This is a unique opportunity to work at the intersection of experimental plasma physics, diagnostic instrumentation, and high-energy laser science while helping build one of the world's most advanced experimental fusion programs.

What You'll Do
  • Design, develop, integrate, and commission diagnostics for high-energy-density physics and inertial fusion experiments.
  • Support diagnostic development across multiple measurement domains, including:
    • Optical diagnostics
    • X-ray imaging and spectroscopy
    • Charged-particle diagnostics
    • Neutron and gamma-ray diagnostics
  • Participate in defining diagnostic requirements for new experimental campaigns and facilities.
  • Work closely with optical, mechanical, electrical, and controls engineers to translate diagnostic concepts into operational systems.
  • Assist with diagnostic alignment, calibration, commissioning, and experimental operation.
  • Analyze and interpret experimental data to evaluate diagnostic performance and extract scientific results.
  • Contribute to experimental planning, diagnostic documentation, and technical reports.
  • Support interactions with external collaborators, universities, and national laboratories.


What You Bring
  • Demonstrated expertise in the design, development, integration, or operation of laser-plasma diagnostics.
  • Demonstrated expertise in at least one of the following diagnostic areas, with the ability and willingness to contribute across multiple diagnostic disciplines:
    • Optical diagnostics
    • X-ray diagnostics
    • Charged-particle diagnostics
    • Nuclear diagnostics
  • Ph.D. in Physics, Plasma Physics, Optical Engineering, or a related field.
  • 2-8 years of experience developing or operating diagnostics for laser-plasma physics experiments.
  • Experience with one or more diagnostic techniques such as optical imaging or spectroscopy, X-ray imaging, particle detectors, neutron diagnostics, or high-speed imaging.
  • Strong understanding of experimental optics, precision instrumentation, and vacuum-based experiments.
  • Experience with experimental data analysis using Python, MATLAB, or equivalent scientific software.
  • Strong analytical and problem-solving skills.
  • Ability to work effectively in multidisciplinary teams.
  • Excellent written and verbal communication skills.


Nice To Haves
  • Experience at high-power laser facilities.
  • Knowledge of inertial confinement fusion, inertial fusion energy, or high-energy-density plasma physics.
  • Experience with detector calibration, characterization, and uncertainty analysis.
  • Familiarity with vacuum systems, radiation detectors, high-voltage systems, or precision opto-mechanical instrumentation.
  • Experience with data acquisition systems, timing systems, and scientific imaging.
  • Experience integrating diagnostics into complex experimental facilities.
  • Familiarity with CAD software for diagnostic integration and mechanical design.
  • Record of scientific publications related to laser-plasma physics or diagnostic development.


Compensation offered will be determined by factors such as location, level, job-related knowledge, skills, and experience. Certain roles may be eligible for incentive compensation, equity, benefits.

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