Nuclear physics from lattice QCD

Nuclear physics from lattice QCD
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DOI:
10.1016/j.ppnp.2010.08.002
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发表时间:
2010-04
影响因子:
9.6
通讯作者:
S. Beane;W. Detmold;K. Orginos;M. Savage
S. Beane;W. Detmold;K. Orginos;M. Savage
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
S. Beane;W. Detmold;K. Orginos;M. Savage

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本文综述了建立格点量子色动力学作为核物理预测计算框架的最新进展。目前的技术,用于提取低能强子散射振幅和相互作用的调查其次是最近的两体和少体计算的NPLQCD合作和其他审查。概述了核物理,预计将完成与格点QCD在未来十年,沿着所需的计算资源的估计,提出。
We review recent progress toward establishing lattice Quantum Chromodynamics as a predictive calculational framework for nuclear physics. A survey of the current techniques that are used to extract low-energy hadronic scattering amplitudes and interactions is followed by a review of recent two-body and few-body calculations by the NPLQCD collaboration and others. An outline of the nuclear physics that is expected to be accomplished with Lattice QCD in the next decade, along with estimates of the required computational resources, is presented.