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Sandia National Laboratories seeks a Postdoctoral Appointee to conduct innovative research on radiation effects in microelectronics, focusing on non-volatile memory technologies and devices built at Sandia's facilities. You will work with a collaborative team and have access to premier facilities to study SEE, TID, and dose-rate effects.
Responsibilities include experimental or simulation work, reporting findings, and presenting results at conferences and in journals, with opportunities for
Sandia National Laboratories is the nation's premier science and engineering laboratory for national security and technology innovation, with teams of specialists focused on cutting‑edge work in a broad array of areas.
What Your Job Will Be Like:
We seek a motivated Postdoctoral Appointee to conduct innovative research and analysis on radiation effects in microelectronics. In this position, your work may range from performing experiments, informing design, or running simulations to predict and better understand device performance in radiation environments. This work will focus on advanced and emerging non‑volatile memory technologies including custom devices built at Sandia's MESA fab, external foundries, and advanced‑node commercial technologies.
You will work in a collaborative environment with a complementary team and have access to some of the world's most powerful facilities, tools, and expertise to evaluate device performance in radiation environments including neutrons, x‑rays, gamma, and electromagnetic environments to understand damage mechanisms, single‑event effects (SEE), dose rate effects, and total ionizing dose (TID) effects.
The Radiation Effects Experimentation and Analysis Department is committed to ensuring the operational capability of the nation's nuclear stockpile in radiation and electromagnetic environments. Our work spans a diverse range of activities, from fundamental radiation effects research to the qualification of electronic components, subsystems, and systems against both natural and man‑made radiation environments, including those produced by nuclear detonations. We accomplish our mission by conducting both basic and applied radiation effects research on materials, electronics, and surrogate test objects, as well as developing critical diagnostics and performing simulations to analyze how electronics and other test objects respond to radiation.
Benefits: Flexible work arrangements for many positions include 9/80 and 4/10 compressed workweeks, part‑time work, and telecommuting. Generous vacation, strong medical and other benefits, competitive 401(k), learning opportunities, relocation assistance, and amenities aimed at creating a solid work/life balance. These benefits vary by job classification.
All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability, veteran status, and any other protected class under state or federal law.