Isotropic Distribution of the Projectile-Like Products in the Reaction 36Ar+124Sn at 35MeV/u

  • The projectile-like products at 5.3° in the reaction 35MeV/u 36Ar+ 124Sn were inclusively measured with good isotropic identification. With increasing kinetic energy, the average N/Z ratio of the products gradually decreases,approaching to that of the projectile. It is shown from the isospin dependent quantum mechanics(IQMD) that with the increasing of reaction time, the average kinetic energy of the projectile-like products decreases, while the N/Z ratio increases gradually. Moreover, the isotropic composition is obviously dependent on the impact parameter, and the N/Z ratio is becoming smaller with increasing collision centrality.
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XIAO Zhi-Gang, JIN Gen-Ming, WU He-Yu, HU Rong-Jiang, WANG Hong-Wei, LI Zu-Yu, DUAN Li-Min, WANG Su-Fang, WEI Zhi-Yong, ZHANG Bao-Guo, LIU Jian-Ye and ZHU Yong-Tai. Isotropic Distribution of the Projectile-Like Products in the Reaction 36Ar+124Sn at 35MeV/u[J]. Chinese Physics C, 2003, 27(6): 493-497.
XIAO Zhi-Gang, JIN Gen-Ming, WU He-Yu, HU Rong-Jiang, WANG Hong-Wei, LI Zu-Yu, DUAN Li-Min, WANG Su-Fang, WEI Zhi-Yong, ZHANG Bao-Guo, LIU Jian-Ye and ZHU Yong-Tai. Isotropic Distribution of the Projectile-Like Products in the Reaction 36Ar+124Sn at 35MeV/u[J]. Chinese Physics C, 2003, 27(6): 493-497. shu
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Received: 2002-09-24
Revised: 1900-01-01
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Isotropic Distribution of the Projectile-Like Products in the Reaction 36Ar+124Sn at 35MeV/u

    Corresponding author: XIAO Zhi-Gang,
  • Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000,China

Abstract: The projectile-like products at 5.3° in the reaction 35MeV/u 36Ar+ 124Sn were inclusively measured with good isotropic identification. With increasing kinetic energy, the average N/Z ratio of the products gradually decreases,approaching to that of the projectile. It is shown from the isospin dependent quantum mechanics(IQMD) that with the increasing of reaction time, the average kinetic energy of the projectile-like products decreases, while the N/Z ratio increases gradually. Moreover, the isotropic composition is obviously dependent on the impact parameter, and the N/Z ratio is becoming smaller with increasing collision centrality.

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