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March 5, 2026Nuclear Instruments and Methods in Physics Research Section B Beam Interactions with Materials and Atoms0 citationsOpen Access

Ion track formation and porosity in InSb irradiated with 125 MeV and 150 MeV Ag ions

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TATaleb AlwadiSDShankar DuttJWJessica Wierbik

Key Points

  • The aim is to understand how ion track formation and porosity in InSb are influenced by different energies and angles of Ag ion irradiation.
  • Ion irradiation of InSb with 125 MeV and 150 MeV Ag ions.
  • Measurement of track radii using Rutherford backscattering spectrometry (RBS) in channelling geometry.
  • Evaluation of damage fraction and porosity at varying ion fluences and angles.
  • Track radii are approximately 5 nm for 125 MeV and 8 nm for 150 MeV ions.
  • Damage fraction saturates at around 90% amorphization, indicating some recrystallization.
  • A porous structure appears at a fluence of 8.8 × 10^12 ions/cm², with no significant porosity at lower fluences.
  • Average pore diameter varies with irradiation parameters, showing larger size at 125 MeV for 5° and 30° angles, and larger at 150 MeV for 60° angle.

Abstract

Ion track formation and porosity in InSb following 125 MeV and 150 MeV 107 Ag swift heavy-ion irradiation are investigated as a function of ion fluence and irradiation angle. Rutherford backscattering spectrometry in channelling geometry reveals track radii of approximately 5 nm and 8 nm for 125 MeV and 150 MeV ion energies, respectively. The results indicate that the damage fraction saturates at approximately 90% amorphization, suggesting partial recrystallization inhibits complete amorphization. In addition to track formation, a porous structure develops at a fluence of 8 . 8 × 1 0 12 ions/cm 2 , whereas no significant porosity is observed at lower fluences. Notably, the average pore diameter and pore density differ for the different irradiation parameters. • RBS/C reveals track radii of ≈ 5 nm and ≈ 8 nm for 125 MeV and 150 MeV, respectively. • Damage fraction saturates at 90% suggesting partial recrystallization. • For 5° and 30° irradiation angles, the average pore diameter is larger at 125 MeV than at 150 MeV. • For 60° irradiation angle, the average pore diameter is larger at 150 MeV than at 125 MeV.

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Cite This Study

Alwadi et al. (2026) studied this question.

synapsesocial.com/papers/69a91dedd6127c7a504c13b5https://doi.org/10.1016/j.nimb.2026.166066
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