Experimental study of the excitation functions of proton induced reactions on natSn up to 65 MeV

A. Hermanne, F. Tárkányi, F. Ditrói, S. Takács, R. Adam Rebeles, M. S. Uddin, M. Hagiwara, M. Baba, Yu Shubin, S. F. Kovalev

Research output: Contribution to journalArticle

26 Citations (Scopus)

Abstract

Using the stacked-foil activation technique, cross-sections of proton induced reactions on natural Sn were determined up to 67 MeV. Excitation functions are reported for the first time for the product nuclides 109In, 110In, 111In, 114mIn, 113Sn, 117mSn, 115Sb, 120mSb. Comparison with low energy published data for reactions leading to 116mSb, 117Sb, 118mSb, 122Sb, 124Sb are discussed. For all excitation functions a theoretical calculation using the ALICE-IPPE code was performed. Relevance to the production of medically relevant radioisotopes (111In, 114mIn, 117mSn) is discussed.

Original languageEnglish
Pages (from-to)180-191
Number of pages12
JournalNuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms
Volume247
Issue number2
DOIs
Publication statusPublished - Jun 1 2006

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Protons
protons
nuclides
Radioisotopes
Metal foil
excitation
Isotopes
foils
Chemical activation
activation
cross sections
products
energy

Keywords

  • <sup>109</sup>In
  • <sup>110</sup>In
  • <sup>111</sup>In
  • <sup>113</sup>Sn
  • <sup>114m</sup>In
  • <sup>115</sup>Sb
  • <sup>116m</sup>Sb
  • <sup>117</sup>Sb
  • <sup>117m</sup>Sn
  • <sup>118m</sup>Sb
  • <sup>120m</sup>Sb
  • <sup>122</sup>Sb
  • <sup>124</sup>Sb
  • Experimental cross-sections
  • Medical radionuclides
  • Model calculations
  • Proton induced reactions
  • Sn targets

ASJC Scopus subject areas

  • Instrumentation
  • Nuclear and High Energy Physics

Cite this

Experimental study of the excitation functions of proton induced reactions on natSn up to 65 MeV. / Hermanne, A.; Tárkányi, F.; Ditrói, F.; Takács, S.; Adam Rebeles, R.; Uddin, M. S.; Hagiwara, M.; Baba, M.; Shubin, Yu; Kovalev, S. F.

In: Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, Vol. 247, No. 2, 01.06.2006, p. 180-191.

Research output: Contribution to journalArticle

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abstract = "Using the stacked-foil activation technique, cross-sections of proton induced reactions on natural Sn were determined up to 67 MeV. Excitation functions are reported for the first time for the product nuclides 109In, 110In, 111In, 114mIn, 113Sn, 117mSn, 115Sb, 120mSb. Comparison with low energy published data for reactions leading to 116mSb, 117Sb, 118mSb, 122Sb, 124Sb are discussed. For all excitation functions a theoretical calculation using the ALICE-IPPE code was performed. Relevance to the production of medically relevant radioisotopes (111In, 114mIn, 117mSn) is discussed.",
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AU - Hermanne, A.

AU - Tárkányi, F.

AU - Ditrói, F.

AU - Takács, S.

AU - Adam Rebeles, R.

AU - Uddin, M. S.

AU - Hagiwara, M.

AU - Baba, M.

AU - Shubin, Yu

AU - Kovalev, S. F.

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AB - Using the stacked-foil activation technique, cross-sections of proton induced reactions on natural Sn were determined up to 67 MeV. Excitation functions are reported for the first time for the product nuclides 109In, 110In, 111In, 114mIn, 113Sn, 117mSn, 115Sb, 120mSb. Comparison with low energy published data for reactions leading to 116mSb, 117Sb, 118mSb, 122Sb, 124Sb are discussed. For all excitation functions a theoretical calculation using the ALICE-IPPE code was performed. Relevance to the production of medically relevant radioisotopes (111In, 114mIn, 117mSn) is discussed.

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