Anisotropic Structural Response of NdGaO3 Single Crystals to 147 MeV Kr-Ion Irradiation

NdGaO3 is an orthorhombic perovskite substrate whose response to swift heavy ions remains insufficiently understood. Here, (001)- and (110)-oriented single-crystal wafers were irradiated with 147 MeV 84Kr15+ ions to 1 × 1013 ions/cm2 and examined by symmetric Cu Kα X-ray diffraction. Peak shifts were evaluated using a two-parameter strain/sample-displacement model; PDXL was used for phase identification and diagnostic whole-pattern fitting, while SRIM and NIST attenuation data were used to compare the ion range with the absorption-weighted X-ray depth. Irradiation strongly reduced and broadened the principal reflections and enhanced diffuse scattering near 2θ ≈ 30°. Corrected normal strains were 0.30% for (001) and 1.20% for (110). Reflection-specific apparent microstrains were 0.29–0.61% and 0.69–1.31%, respectively. A broad component already present in the Pristine (110) profile increased in fitted area by approximately 63% after irradiation. Full orthorhombic-cell and Williamson–Hall outputs from unconstrained powder-profile fitting are mathematically underdetermined for these highly oriented wafers and were not used quantitatively. Attenuation calculations establish strong overlap between the probed depth and the SRIM-defined modified region, although depth gradients in crystallinity prevent unique assignment of residual Bragg intensity. The results demonstrate pronounced anisotropic disorder without additional crystalline phases.

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Journal
Materials
Published
2026-09-21
DOI
https://doi.org/10.3390/ma19184022
Primary Topic
Nuclear materials and radiation effects
Type
article
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Anisotropic Structural Response of NdGaO3 Single Crystals to 147 MeV Kr-Ion Irradiation

Amangeldy M. Zhunusbekov, Vladislavs Bezrukovs, Miramgul S. Tokasheva, Zhakyp T. Karipbayev et al.
Materials
Nuclear materials and radiation effects
article

Anisotropic Structural Response of NdGaO3 Single Crystals to 147 MeV Kr-Ion Irradiation

Amangeldy M. Zhunusbekov, Vladislavs Bezrukovs, Miramgul S. Tokasheva, Zhakyp T. Karipbayev, Marina Koņuhova, Anatoli I. Popov, Aizat Bakytkyzy, Sofija Konuhova, Askhat Kakimov
article en

Abstract

NdGaO3 is an orthorhombic perovskite substrate whose response to swift heavy ions remains insufficiently understood. Here, (001)- and (110)-oriented single-crystal wafers were irradiated with 147 MeV 84Kr15+ ions to 1 × 1013 ions/cm2 and examined by symmetric Cu Kα X-ray diffraction. Peak shifts were evaluated using a two-parameter strain/sample-displacement model; PDXL was used for phase identification and diagnostic whole-pattern fitting, while SRIM and NIST attenuation data were used to compare the ion range with the absorption-weighted X-ray depth. Irradiation strongly reduced and broadened the principal reflections and enhanced diffuse scattering near 2θ ≈ 30°. Corrected normal strains were 0.30% for (001) and 1.20% for (110). Reflection-specific apparent microstrains were 0.29–0.61% and 0.69–1.31%, respectively. A broad component already present in the Pristine (110) profile increased in fitted area by approximately 63% after irradiation. Full orthorhombic-cell and Williamson–Hall outputs from unconstrained powder-profile fitting are mathematically underdetermined for these highly oriented wafers and were not used quantitatively. Attenuation calculations establish strong overlap between the probed depth and the SRIM-defined modified region, although depth gradients in crystallinity prevent unique assignment of residual Bragg intensity. The results demonstrate pronounced anisotropic disorder without additional crystalline phases.

MaterialsVol. 19(18)
L. N. Gumilyov Eurasian National University (KZ), Institute of Solid State Physics, UL (LV), University of Latvia (LV), Ventspils University of Applied Sciences (LV)
Openalex Percentile: Top 25%
Nuclear materials and radiation effects
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