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Postdoctoral Appointee - Radiation Software, Onsite
Remote / Online - Candidates ideally in
Albuquerque, Bernalillo County, New Mexico, 87190, USA
Listed on 2026-07-30
Albuquerque, Bernalillo County, New Mexico, 87190, USA
Listing for:
Sandia National Laboratories
Part Time, Remote/Work from Home
position Listed on 2026-07-30
Job specializations:
-
Engineering
Research Scientist -
Research/Development
Research Scientist, Data Scientist
Job Description & How to Apply Below
Sandia National Laboratories is the nation's premier science and engineering lab for national security and technology innovation, with teams of specialists focused on cutting-edge work in a broad array of areas. Some of the main reasons we love our jobs:
+ Challenging work with amazing impact that contributes to security, peace, and freedom worldwide
+ Extraordinary co-workers
+ Some of the best tools, equipment, and research facilities in the world
+ Career advancement and enrichment opportunities
+ Flexible work arrangements for many positions include 9/80 (work 80 hours every two weeks, with every other Friday off) and 4/10 (work 4 ten-hour days each week) compressed workweeks, part-time work, and telecommuting (a mix of onsite work and working from home)
+ Generous vacation, strong medical and other benefits, competitive 401k, learning opportunities, relocation assistance and amenities aimed at creating a solid work/life balance
* World-changing technologies. Life-changing careers. Learn more about Sandia at: http://(Use the "Apply for this Job" box below)..gov
* These benefits vary by job classification.
What Your Job Will Be Like:
We are seeking a Computational Scientist to develop and execute modeling & simulation of electron, X-ray, and gamma-ray radiation transport for Sandia's nuclear deterrence and other missions! You will help define environmental specifications for our nuclear deterrence systems and components and predict the reliability of our engineered technologies in various radiation environment scenarios. You will model the impacts of radiation effects on materials and/or electronics used within these technologies, helping to inform design decisions for adequate component function and resilience.
On any given day, you may be called on to:
+ Implement new features and algorithms or improve existing functionality while maintaining code quality to advance our radiation transport codes.
+ Develop models and perform simulations on world-class high-performance computing systems to predict the transport of radiation and its effects on system and component design and qualification.
+ Perform fundamental research and development around radiation physics and effects on materials to provide solutions for next-generation problems.
+ Identify new research ideas and directions, collaborating with colleagues to write research proposals.
+ Present results at workshops, conferences, and meetings with sponsors and partners.
Due to the nature of the work, the selected applicant must be able to work onsite. Relocation will be provided for those that qualify.
Qualifications We Require:
+ PhD in Computational Science, Engineering, Physics, Applied Math, or a related STEM field conferred within 5 years of start date
+
Experience with nuclear engineering, computational modeling, and simulation of radiation transport/effects and/or multi-physics applications
+ Publication of research results in peer reviewed journals
+ Ability to obtain and maintain DOE Q clearance
Qualifications We Desire:
+
Experience with the development, code implementation and/or application/analyses of either Deterministic or Monte Carlo methods
+ Scientific computer programming experience with Modern C++ and/or Python
+ Ability to work autonomously, while integrating effectively into a multidisciplinary team environment.
+ Active DOE Q clearance
+
Experience with parallel code development and/or execution on high-performance computing architectures using MPI, OpenMP, Kokkos, and/or GPUs.
+
Experience with uncertainty quantification, verification and validation, sensitivity analysis and/or optimization.
+
Experience with coupled electron/X-ray particle radiation transport
+
Experience with the development, code implementation and/or application/analyses of Monte Carlo methods
+ Strong interpersonal and communication skills, with an ability to team with a diverse group of backgrounds.
+ Experience working in a SCRUM team
About Our Team:
The Radiation Software Department (1321) performs theoretical and computational research to understand the effects caused by ionizing radiation from nuclear weapons, space environments and other sources, including those generated by experimental facilities. We develop physical models and numerical methods for deployment in computer codes that model the interaction of particle radiation (X-rays, electrons, neutrons, gammas) with matter. We use these and other types of codes to predict and understand electrical and mechanical radiation effects.
Software quality engineering, software verification methods, validation to experimental data, and uncertainty quantification are fundamental to these computational efforts. We support a variety of customers who are concerned with the effect of radiation on their systems and components.
The team is committed to attracting, retaining, and encouraging an outstanding workforce representing a broad group of people and perspectives. We share this common vision by encouraging mutual respect among staff, post-docs, and…
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