Special notice
Open Source Software: MyTRIM: Pioneering Ion Transport Simulations in Materials
Department of Energy, Battelle Energy Alliance–doe CNTR. Custom Computer Programming Services.
Response deadline
March 15, 2026 at 11:00 AM EDT
Closed 187 days ago. Posted October 31, 2024. Scheduled to archive March 30, 2026.
Description
As published on SAM.gov.
Open Source Software:
MyTRIM: Pioneering Ion Transport Simulations in Materials MyTRIM stands at the forefront of computational materials science, offering unparalleled insights into ion collision cascades within various materials through sophisticated Monte Carlo simulations. Developed under the auspices of the Idaho National Laboratory (INL), MyTRIM addresses the complex challenge of predicting and analyzing ion transport phenomena within materials.
This software emerges as a response to the need for a detailed understanding of ion interactions, crucial for advancing materials science and engineering applications. MyTRIM is an open-source, three-dimensional binary collision Monte Carlo library. It excels in sampling ion collision cascades in materials, a vital process for understanding and predicting the behavior of ions in a diverse range of materials.
This software leverages the Monte Carlo method for its simulations, offering a robust platform for researchers and scientists to simulate ion transport phenomena with high accuracy and reliability.
Advantages:
Open Source and Free: Available at no cost, promoting widespread access and collaboration in the research community.
Advanced Simulation Capabilities: Employs three-dimensional binary collision Monte Carlo simulations, providing detailed insights into ion-material interactions.
Versatile Applications: Suitable for various materials science and engineering projects.
User-Friendly: Though advanced in its capabilities, MyTRIM is accessible to both experienced researchers and newcomers in the field.
Applications:
Materials Science Research: Understanding ion implantation, damage, and transport processes in semiconductors, metals, and other materials.
Nuclear Energy: Simulating radiation damage effects in nuclear reactor components.
Space Technology: Analyzing the impact of cosmic radiation on spacecraft materials and components.
Medical Physics: Researching ion transport in biological materials for applications like radiation therapy. Dive into the next level of materials science research with MyTRIM. Download now and join the community of researchers advancing the understanding of ion transport in materials. Visit the GitHub page to get started. INL’s Technology Deployment department focuses exclusively on licensing intellectual property and partnering with industry collaborators capable of commercializing our innovations.
Our goal is to commercialize the technologies developed by INL researchers. We do not engage in purchasing, manufacturing, procurement decisions, or providing funding. Additionally, this is not a call for external services to assist in the development of this technology.
Publications
Every notice SAM.gov issued under this solicitation number, oldest first. Each is a separate record on SAM.
October 31, 2024
Special notice
Due March 15, 2026 at 11:00 AM EDT. SAM.gov, notice db0376505c5846fd8b1e0d233ca394f5
Points of contact
- Andrew Rankinandrew.rankin@inl.gov
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