Argonne National Laboratory (EXT-015)
Summary 🟡 ~
- Owner Unit: External partner organization
- Content Type: partnership
- Campus/Location: Off-campus (Lemont, IL)
- Last Verified: July 1, 2026
Organization
Argonne National Laboratory is a U.S. Department of Energy multidisciplinary science and engineering laboratory. DePaul's documented user-facility relationships include sub-facilities such as the Advanced Photon Source (EXT-003), Argonne Leadership Computing Facility (EXT-004), and the Argonne Tandem Linac Accelerator System (EXT-012).
Access status
- Level: yellow (
Negotiated Access) - Rationale: Argonne National Laboratory parent organization; DePaul user-facility access (APS, ALCF, CNM) coordinated through ORS and DOE user programs.
- Access URL: offices.depaul.edu/research-services/Pages/default.aspx
- Contact name: Office of Research Services
- Contact email: ors@depaul.edu
- Verification date: 2026-06-30
- Source URLs:
- science.osti.gov/laboratories/Argonne-National-Laboratory
Linked publications
- Automated Image Analysis of Noisy Microarrays — DOI (PUB-161). Dataset provided by Argonne; MATLAB analysis at DePaul. Does not name ALCF.
- GRA-990 — NSF REU site at DePaul and Argonne National Laboratory in bioinformatics and grid computing (Scholars project page; packet
2026-08-21-scholars-projects-promotion). Does not name ALCF.
Documented connections
Generated from publication↔resource and person↔publication registries. Superscript numbers open Sources below. Multiple sources on one claim are grouped as 1,4. Grant links are listed on publication and grant pages.
Publications
- Evaluating Low Cost Sensor Performance for Use in Industrial Internet-of-Things Platforms: Distributed Sensing Solutions for Urban Area Air Quality Health Monitors (2020) — documented, collaborates with · DOI1
- The Atomic Structure of Amorphous Oxide Semiconductors (2014) — documented, uses · DOI2
- Automated Image Analysis of Noisy Microarrays (2007) — documented, uses · DOI3
- Evaluating Low Cost Sensor Performance for Use in Industrial Internet-of-Things Platforms: Distributed Sensing Solutions for Urban Area Air Quality Health Monitors (2020) — documented, mentions · DOI4
- Structural measurement of electron-phonon coupling and electronic thermal transp (2022) — supporting, mentions · DOI5
- Elucidating the Solution-Phase Structure and Behavior of 8-Hydroxyquinoline Zinc (2018) — supporting, mentions · DOI6
- Direct measurements of multi-photon induced nonlinear lattice dynamics in semico (2016) — supporting, mentions · DOI7
- Ultrafast Carrier–Lattice Interactions and Interlayer Modulations of Bi2</s (2021) — supporting, mentions · DOI8
- Non-thermal fluence threshold for femtosecond pulsed x-ray radiation damage in p (2019) — supporting, mentions · DOI9
- Picosecond x-ray strain rosette reveals direct laser excitation of coherent tran (2016) — supporting, mentions · DOI10
- Subpicosecond Optical Stress Generation in Multiferroic BiFeO3 (2022) — supporting, mentions · DOI11
- Resonant x-ray absorption of strong-field-ionized CF 3< (2020) — supporting, mentions · DOI12
- Effect of Zinc and Strontium Dopants on the Structure and Stability of Hydroxyap (2018) — supporting, mentions · DOI13
- The Crystal Structure of (CuxZn1-x)0.456In1.084Ge0.46O3 (CuZIGO) Using Neutron a (2020) — supporting, mentions · DOI14
- Crystallographic Analysis of the Dorsal Spine of Squalus suckleyi (2024) — supporting, mentions · DOI15
- The Effect of Grain Size and Forming Gas Reduction on the Electrical Properties (2013) — supporting, mentions · DOI16
- Analyzing Nanoscale Thermal Transport Using Time-Resolved X-ray Diffraction (2021) — supporting, mentions · DOI17
- Structural Studies of Proteins in Solution: Cytochrome-C and Mitochondrial RHO (2013) — supporting, mentions · DOI18
- Time Resolved SAXS Analysis of Fusion Protein (2013) — supporting, mentions · DOI19
- The Crystal Structure of Hexagonal Molybdenum Oxynitride Hydride (2023) — supporting, mentions · DOI20
- Multiwavelength X-Ray Diffraction (2015) — supporting, mentions · DOI21
- Picosecond time-resolved laser pump/X-ray probe experiments using a gated single (2009) — supporting, mentions · DOI22
- Workflows Community Summit 2024: Future Trends and Challenges in Scientific Work (2024) — supporting, mentions · DOI23
- Hard x-ray methods for studying the structure of amorphous thin films and bulk g (2021) — supporting, mentions · DOI24
- Measuring femtometer lattice displacements driven by free carrier diffusion in a (2018) — supporting, mentions · DOI25
- Structural assembly of the human Miro1/2 GTPases based on the crystal structure (2019) — supporting, mentions · DOI26
- Reproducible Notebook Containers using Application Virtualization (2022) — supporting, mentions · DOI27
- Ultrafast carrier-lattice interactions and interlayer modulations of Bi2Se3 by X (2021) — supporting, mentions · DOI28
- Workflows Community Summit 2024: Future Trends and Challenges in Scientific Work (2024) — supporting, mentions · DOI29
People on linked publications
- Mark J. Potosnak (coauthor; PUB-037)1
- Eric Landahl (coauthor; PUB-049)5
- Kyle A. Grice (coauthor; PUB-051)6
- Daniela Raicu (coauthor; PUB-161)3
- Jacob Furst (coauthor; PUB-161)3
- Tanu Malik (author; PUB-192)23
- Gabriela Gonzalez Aviles (author; PUB-455)24
Sources
- ECS Meeting Abstracts: Array of Things is a smart-cities joint initiative involving a partnership between Argonne National Laboratory, the University of Chicago, and the City of Chicago; nodes incorporate low-power electrochemical gas sensors for urban air-quality monitoring. DOI
- Wide-angle x-ray scattering data were collected at Argonne National Laboratory. Archived source retained by Resource Map maintainers. View current source
- The data set was provided by Argonne National Laboratories in Illinois. Archived source retained by Resource Map maintainers. View current source
- {'resource_id': 'EXT-015', 'label': 'Argonne National Laboratory', 'pattern': '\bargonne\b|\badvanced photon source\b|\baps\b'}. Archived source retained by Resource Map maintainers. View current source
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Notes
Parent organization resource for Argonne sub-facility ownership arrows (ORS policy 2026-07-01). Sub-facilities are owned by Argonne, not self-owned partner rows.