Senior Neutronics Engineer - Isotope Production

OkloSanta Clara, CA
$130,000 - $220,000Remote

About The Position

The Senior Neutronics Engineer is responsible for developing and executing neutronics analyses supporting the design, optimization, operation, and safety evaluation of an isotope production reactor. The engineer will perform analyses to support core design, fuel cycle, target performance, shielding, and sensitivity/uncertainty quantification across the reactor lifecycle and isotope production facility. This role requires close collaboration with thermal hydraulics, mechanical design, materials, isotope processing, operations, safety, and licensing teams. The engineer will translate system and production objectives into analysis requirements; develop appropriate computational models and methods; and produce technically sound, traceable, and defensible results. Areas of analysis include criticality, depletion, isotope production, target optimization, shielding, activation, source term, and sensitivity/uncertainty analysis. The isotope division is a small but growing team so the candidate must be capable of operating in a highly iterative and independent environment.

Requirements

  • Bachelors, Masters, or PhD in a technical field, such as nuclear engineering, with experience in reactor design and analysis (Masters or PhD may be preferable)
  • Fluency with Python
  • Proficiency with high performance computing systems
  • Proficiency with MCNP, SERPENT, or SCALE (TRITON, KENO, SAMPLER, TSUNAMI, MAVRIC) is highly recommended

Nice To Haves

  • Hands on experience with irradiation experiments at a research and test reactor is a plus.

Responsibilities

  • Perform reactor core design and optimization using Monte Carlo and, where appropriate, deterministic neutron transport methods.
  • Develop and execute models using codes such as MCNP, Serpent, and SCALE
  • Perform core lifecycle and fuel management analyses, including depletion, burnup, reactivity evolution, power distributions, fuel utilization, and operating cycle optimization.
  • Evaluate core physics parameters, including excess reactivity, control element worth, shutdown margin, reactivity coefficients, kinetics parameters, and criticality safety margins.
  • Design and optimize irradiation targets to meet isotope yield, specific activity, radionuclidic purity, heat limits, and production schedule objectives.
  • Perform depletion, activation, decay, and transmutation analyses for fuel, targets, structural materials, experimental hardware, and reactor components.
  • Develop neutron and photon source terms for shielding, activation, decay heat, dose, and isotope processing evaluations.
  • Perform shielding analyses using variance reduction techniques.
  • Apply sensitivity and uncertainty methods using tools such as TSUNAMI and SAMPLER to quantify nuclear data, modeling, and manufacturing uncertainties.
  • Establish appropriate biases and uncertainties to establish design margins.
  • Develop, qualify, and maintain computational methods, analysis procedures, cross-section libraries, and reference models.
  • Perform verification and validation using critical experiments, shielding benchmarks, depletion benchmarks, operating data, and applicable international benchmark programs.
  • Support the design and evaluation of startup testing, physics measurements, irradiation experiments, and reactor surveillance activities.
  • Couple neutronics results with thermal hydraulic, mechanical, isotope processing, and safety analyses.
  • Perform design space exploration and optimization across competing objectives such as isotope production, fuel utilization, power peaking, irradiation damage, cycle length, and safety margin.
  • Develop repeatable analysis workflows using modern software development practices, including configuration control, automated testing, code review, and reproducible data processing.
  • Provide timely technical feedback to rapidly iterating multidisciplinary design teams.
  • Document assumptions, methods, results, uncertainties, and limitations in clear technical reports.
  • Support design reviews, safety evaluations, licensing activities, and responses to regulatory questions.

Benefits

  • flexible time off
  • equity
  • bonuses
  • competitive pay
  • 401(k)
  • health insurance (with employer contribution)
  • HSA
  • FSA
  • flexible work hours
  • wellness credits
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