Variation of<i>T</i><sub>c</sub>, lattice parameter and atomic ordering in Nb<sub>3</sub>Sn platelets irradiated with 12 MeV protons: correlation with the number of induced Frenkel defects

Изменение Tc, параметра решетки и атомного упорядочения в пластинках Nb3Sn, облучённых протонами 12 МэВ: корреляция с числом индуцированных дефектов Френкеля
Yan V. Zubavichus, R. Flükiger, Tiziana Spina, F. Cerutti, A. Ballarino, C. Scheuerlein, L. Bottura, A. Ryazanov, R D Svetogovov, S. V. Shavkin, Pavel Degtyarenko, Iurii Semenov, Carmine Senatore, Robert Černý, R Cerny
2017-03-07

12 MeV proton irradiationFrenkel defectsNb3Sncritical temperature Tcdisplacements per atom (dpa)
$Nb_3Sn$ platelets with thicknesses between 0.12 and 0.20 mm produced by a high isostatic pressure process at 1250 °C were irradiated at 300 K with 12 MeV protons. The effects of irradiation on the lattice parameter a, the atomic order parameter S and the transition temperature $T_c$ were measured as a function of proton fluence. In view of the presence of multiple energy radiation sources in future accelerators, the present proton data are compared with neutron irradiation data from the literature. The fluences for both types of radiation were replaced by the dpa number, the 'displacements per atom', calculated using the FLUKA code, which is proportional to the number of radiation induced Frenkel defects. It was found that the variation of both a and S for $Nb_3Sn$ after proton and neutron irradiation as a function of dpa fall almost on the same curve, in analogy to the recently reported correlation between T c and the dpa number. By a simultaneous irradiation of two adjacent thin $Nb_3Sn$ platelets, we have shown that this correlation is not only valid for the state of 'steady energy loss' (protons traveling through the first platelet) but also for the state of higher damage at the Bragg peak (second platelet). It follows that the number of radiation induced Frenkel defects in the A15 grains, calculated via the dpa number, can be considered as a 'universal' parameter, allowing the calculation of the variation of $T_c$, a and S of $Nb_3Sn$ under the effect of multiple high energy radiation sources, as in future superconducting accelerators.
1
Irradiation of Nb3Sn platelets with 12 MeV protons at 300 K changes lattice parameter a, atomic order parameter S, and superconducting transition temperature Tc as a function of proton fluence.
2
Replacing proton and neutron fluences by dpa (displacements per atom) calculated with FLUKA makes proton and neutron irradiation data for variations in a and S fall almost on the same curve.
3
Simultaneous irradiation of two adjacent Nb3Sn platelets demonstrates the dpa-based correlation applies both in steady energy-loss conditions and at the higher-damage Bragg peak.
4
The number of radiation-induced Frenkel defects (expressed via dpa) can be treated as a universal parameter to predict variations of Tc, a, and S in Nb3Sn under multiple high-energy radiation sources.
5
The previously reported correlation between Tc and dpa also holds, showing Tc variation aligns with dpa number from different radiation types.
Publication Details
Publication Date
2017-03-07
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Yan V. Zubavichus
R. Flükiger
Tiziana Spina
F. Cerutti
A. Ballarino
C. Scheuerlein
L. Bottura
A. Ryazanov
R D Svetogovov
S. V. Shavkin
Pavel Degtyarenko
Iurii Semenov
Carmine Senatore
Robert Černý
R Cerny
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%