Deuteron activation of natMo - focus on short-lived products
Spokeperson(s)
Eva, Šimečková
Jaromir, Mrazek
Marilena, Avrigeanu
Data Manager(s)
Eva, Šimečková
GANIL Scientific Coordinator
Xavier, Ledoux
Collection Dates (dd-mm-yy)
Start: 01-10-2022
End: 02-10-2022
End of Embargo
02-10-2025
DOI
10.26143/ganil-2022-e832_21
DOI State
findable
Publication Year
2022
Publisher
GANIL, Large Heavy Ion National Accelerator, Caen, France
Data Curator
GANIL, Large Heavy Ion National Accelerator, Caen, France
Hosting Institution
CC-IN2P3, IN2P3’s Computing Centre, Villeurbanne, France
Size
0.743 TB
Experiment details
Abstract
The deuteron-induced reactions at low and medium energies have a great importance in on-going strategic research programs for international large-scale facilities.
The activations by deuterons are complex. Due to their low binding energy, multiple different mechanisms (compound nucleus, direct, breakup etc.) are involved.
Theoretical models, that do not take into account these mechanisms have a limited predictive power. Theory needs more data with a sufficient quality to be able to extract the relevant information. We suggest to perform the activation measurement induced by reaction natMo(d,*) in the energy range 20-40 MeV at SPIRAL2/NFS.
The Irradiation Chamber in NFS, that is coupled to the Pneumatic Transfer System of samples will particularly allow to gather new information on 91mMo, 92Tc, where no data are available due to minute half-lives and on 96mTc, 97mTc, 101Mo and 101Tc, where the available data are limited or questionable.
Setup
Setup
HPGe detector
Beam(s)
Ion(s)
Charge state
Energy
Energy unit
Av. intensity
Intensity unit
Purity (%)
Accelerator
Production
2H
1+
7.5
MeV/u
1.e+12
pps
100
Radioactive
SPIRAL2
2H
1+
10.0
MeV/u
1.e+12
pps
100
Radioactive
SPIRAL2
2H
1+
12.5
MeV/u
1.e+12
pps
100
Radioactive
SPIRAL2
2H
1+
15.0
MeV/u
1.e+12
pps
100
Radioactive
SPIRAL2
2H
1+
17.5
MeV/u
1.e+12
pps
100
Radioactive
SPIRAL2
2H
1+
20.0
MeV/u
1.e+12
pps
100
Radioactive
SPIRAL2
Target(s)
Material
Thickness
Thickness unit
Sample phase
Type
natMo
25
μm
Solid
Isotope
natMo
50
μm
Solid
Isotope
Contributors
Given Name
Family Name
Id.
Affiliation(s)
Eva
Šimečková
Czech Academy of Sciences, Nuclear Physics Institute, Řež, Czechia
Jaromir
Mrazek
Czech Academy of Sciences, Nuclear Physics Institute, Řež, Czechia
Marilena
Avrigeanu
Horia Hulubei National Institute for Physics and Nuclear Engineering, Bucharest, Romania
Institutes
Name
Id.
GANIL, CEA/DRF-CNRS/IN2P3, Caen, France
NPI-CAS, Czech Academy of Sciences, Nuclear Physics Institute, Řež, Czechia
IFIN-HH, Horia Hulubei National Institute for Physics and Nuclear Engineering, Bucharest, Romania
@misc{e832_21_2022,
author = {e832_21 Collaboration},
title = {e832_21 GANIL dataset},
year = {2022},
publisher = {GANIL, Large Heavy Ion National Accelerator, Caen, France},
doi = {10.26143/ganil-2022-e832_21},
url = {https://doi.org/10.26143/ganil-2022-e832_21}
}