Real Stabilization Method and Its Application in Calculating Resonance States

  • We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabilization method. The box discretization method is used to find positive energy states of the Woods-Saxon potential. The discretized positive energy is stabilized against the box size when a resonance condition is met. The phase shifts are calculated by using the wave functions thus obtained. The resonance parameters could be calculated through fitting the energies and phase shifts in resonance region to the Wigner formula.
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ZHANG Li, ZHOU Shan-Gu and MENG Jie. Real Stabilization Method and Its Application in Calculating Resonance States[J]. Chinese Physics C, 2006, 30(S2): 59-61.
ZHANG Li, ZHOU Shan-Gu and MENG Jie. Real Stabilization Method and Its Application in Calculating Resonance States[J]. Chinese Physics C, 2006, 30(S2): 59-61. shu
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Received: 2006-10-13
Revised: 1900-01-01
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Real Stabilization Method and Its Application in Calculating Resonance States

    Corresponding author: ZHOU Shan-Gu,
  • School of Physics, Peking University, Beijing 100871, China2 Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 100080, China3 Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Accelerator of Lanzhou,Lanzhou 730000, China

Abstract: We calculate the single-particle resonances in a spherical Woods-Saxon potential using real stabilization method. The box discretization method is used to find positive energy states of the Woods-Saxon potential. The discretized positive energy is stabilized against the box size when a resonance condition is met. The phase shifts are calculated by using the wave functions thus obtained. The resonance parameters could be calculated through fitting the energies and phase shifts in resonance region to the Wigner formula.

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