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LI Ke, XIA Jia-wen, YANG Jian-cheng, LI Peng. Dynamic Aperture Studies for CSRe Storage Ring[J]. Nuclear Physics Review, 2010, 27(1): 52-55. doi: 10.11804/NuclPhysRev.27.01.052
Citation: LI Ke, XIA Jia-wen, YANG Jian-cheng, LI Peng. Dynamic Aperture Studies for CSRe Storage Ring[J]. Nuclear Physics Review, 2010, 27(1): 52-55. doi: 10.11804/NuclPhysRev.27.01.052

Dynamic Aperture Studies for CSRe Storage Ring

doi: 10.11804/NuclPhysRev.27.01.052
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2010-03-20
  • Dynamic aperture(DA) is playing a more and more important role in circular accelerators, especially in the modern storage rings. In this paper, the DA of CSRe is analyzed by MAD program. Comparing the DA under various assumptions, we find that the multipole errors in dipoles or quadrupoles, and the sextupoles which bring strong nonlinearities, and limit the DA of CSRe. Fortunately, the DA is larger than the physical aperture in all the cases, and that is large enough to satisfy the high precision physical experimental request.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Dynamic Aperture Studies for CSRe Storage Ring

doi: 10.11804/NuclPhysRev.27.01.052

Abstract: Dynamic aperture(DA) is playing a more and more important role in circular accelerators, especially in the modern storage rings. In this paper, the DA of CSRe is analyzed by MAD program. Comparing the DA under various assumptions, we find that the multipole errors in dipoles or quadrupoles, and the sextupoles which bring strong nonlinearities, and limit the DA of CSRe. Fortunately, the DA is larger than the physical aperture in all the cases, and that is large enough to satisfy the high precision physical experimental request.

LI Ke, XIA Jia-wen, YANG Jian-cheng, LI Peng. Dynamic Aperture Studies for CSRe Storage Ring[J]. Nuclear Physics Review, 2010, 27(1): 52-55. doi: 10.11804/NuclPhysRev.27.01.052
Citation: LI Ke, XIA Jia-wen, YANG Jian-cheng, LI Peng. Dynamic Aperture Studies for CSRe Storage Ring[J]. Nuclear Physics Review, 2010, 27(1): 52-55. doi: 10.11804/NuclPhysRev.27.01.052

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