Published June 12, 2026 | Version v1
Dataset Restricted
Data for "Charge exchange of slow highly charged ions from an electron beam ion trap with surfaces and 2D materials"
Description
Contents of this data set
This repository contains the processed experimental data as well as the evaluation procedure applied to create the figures published in "Charge exchange of slow highly charged ions from an electron beam ion trap with surfaces and 2D materials".
Context and methodology
- This small review article summarises recent achievements in understanding highly charged ion interaction with 2D materials, with the three subtopics of energy deposition, secondary particle emission and energy retention/material modification.
- Note that except for one figure (FIG. 3a) all figures are reproduced from other publications with permission.
- The data comprises a coincidence measurement result (Xe30+ transmitted through single-layer graphene) in a list-mode fashion, i.e. for single impinging ions we record the impact position (x/y) on our 2D position-sensitive particle detector and the time of flight of the projectiles from sample to detector. Data is filtered using the time of flight to depict the 2D pattern (counts vs. charge state and scattering angle) for ions transmitted through the freestanding graphene sample and the support structure.
Technical details
- The dataset includes one file in .dgraph-format (see below). The new (not reproduced) manuscript figure (excluding schematics and reproduced figures) can be reproduced using this data file. The data inside the file is structured in a folder-tree labelled according to the content of the figure and/or the final (sub) figure number.
- DataGraph from Visual Data Tools is required to open this data set. The data was created using version 5.5.2beta.
Files
Additional details
Related works
- Is part of
- Journal Article: 10.1088/1361-6455/ad2e2a (DOI)
Funding
- FWF Austrian Science Fund
- 10.55776/Y1174
- FWF Austrian Science Fund
- 10.55776/ I4914
- FWF Austrian Science Fund
- 10.55776/P36264