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CHEN Li-qing, Y. Khajuria, CHEN Xiang-jun, XU Ke-zun. Research of Triple Differential Cross Sections of Ag+ (4d10)[J]. Nuclear Physics Review, 2002, 19(Suppl): 23-25. doi: 10.11804/NuclPhysRev.19.S1.023
Citation: CHEN Li-qing, Y. Khajuria, CHEN Xiang-jun, XU Ke-zun. Research of Triple Differential Cross Sections of Ag+ (4d10)[J]. Nuclear Physics Review, 2002, 19(Suppl): 23-25. doi: 10.11804/NuclPhysRev.19.S1.023

Research of Triple Differential Cross Sections of Ag+ (4d10)

doi: 10.11804/NuclPhysRev.19.S1.023
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2002-07-20
  • The three-body distorted-wave Born approximations with sp in-averaged static exchange potential have been used to calculate the electron-impact triple-differential ionization cross sections(TDCS) of 4d orbital (Ag + (4d 10 )) in coplanar asymmetric geometry. At high incident energy(E o =1 000 eV), ionization amplitude of Ag + decreases with increase of scattered angle(θ a )and the shape of the binary peak and recoil peak is more complicated than s- and p-electron: binary...
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Research of Triple Differential Cross Sections of Ag+ (4d10)

doi: 10.11804/NuclPhysRev.19.S1.023

Abstract: The three-body distorted-wave Born approximations with sp in-averaged static exchange potential have been used to calculate the electron-impact triple-differential ionization cross sections(TDCS) of 4d orbital (Ag + (4d 10 )) in coplanar asymmetric geometry. At high incident energy(E o =1 000 eV), ionization amplitude of Ag + decreases with increase of scattered angle(θ a )and the shape of the binary peak and recoil peak is more complicated than s- and p-electron: binary...

CHEN Li-qing, Y. Khajuria, CHEN Xiang-jun, XU Ke-zun. Research of Triple Differential Cross Sections of Ag+ (4d10)[J]. Nuclear Physics Review, 2002, 19(Suppl): 23-25. doi: 10.11804/NuclPhysRev.19.S1.023
Citation: CHEN Li-qing, Y. Khajuria, CHEN Xiang-jun, XU Ke-zun. Research of Triple Differential Cross Sections of Ag+ (4d10)[J]. Nuclear Physics Review, 2002, 19(Suppl): 23-25. doi: 10.11804/NuclPhysRev.19.S1.023

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