Nuclear Forensics is a rapidly evolving field with a steadily increasing number of publications. Research in developing or consolidating signatures and methods in various analytical areas, such as elemental and isotopic parameters, age dating and morphology have resulted in significant progress. Moreover, the development of new reference materials for uranium ore concentrate, the application of micro-analytical techniques and the increasing use of data evaluation techniques such as machine learning or deep learning further add to the nuclear forensic toolbox. The examination of samples from real incidents demonstrate the usefulness and the investigative value of nuclear forensic techniques.
VARGA Zsolt;
WALLENIUS Maria;
KRACHLER Michael;
RAUFF-NISTHAR Nadya;
FONGARO Lorenzo;
KNOTT Alexander;
NICHOLL Adrian;
MAYER Klaus;
2021-12-13
ELSEVIER SCI LTD
JRC125334
0165-9936 (online),
https://www.sciencedirect.com/science/article/pii/S0165993621003265,
https://publications.jrc.ec.europa.eu/repository/handle/JRC125334,
10.1016/j.trac.2021.116503 (online),
| Name | Country | City | Type |
|---|
This document is only visible at the Commission level.
You are not authorized to publish or distribute it outside the European Commission.
This is a public document. You can share this publication.
Datasets
| ID | Title | Public URL |
|---|
Dataset collections
| ID | Acronym | Title | Public URL |
|---|
Scripts / source codes
| Description | Public URL |
|---|
Additional supporting files
| File name | Description | File type |
|---|