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공공누리This item is licensed Korea Open Government License

dc.contributor.author
김장호
dc.contributor.author
조기현
dc.date.accessioned
2019-08-28T07:41:44Z
dc.date.available
2019-08-28T07:41:44Z
dc.date.issued
2015-07-31
dc.identifier.issn
0374-4884
dc.identifier.uri
https://repository.kisti.re.kr/handle/10580/14422
dc.identifier.uri
http://www.ndsl.kr/ndsl/search/detail/article/articleSearchResultDetail.do?cn=NART73899745
dc.description.abstract
Lattice quantum chromodynamics (QCD) is the non-perturbative implementation of field theory to solve the QCD theory of quarks and gluons by using the Feynman path integral approach. We calculate the kaon CP (charge-parity) violation parameter B_K generally arising in theories of physics beyond the Standard Model. Because lattice simulations are performed on finite volume lattices, the finite volume effects must be considered to exactly estimate the systematic error. The computational cost of numerical simulations may increase dramatically as the lattice spacing is decreased
dc.language
eng
dc.relation.ispartofseries
Journal of the Korean Physical Society
dc.title
A Study on the Optimization of Finite Volume Effects of B_K in Lattice QCD
dc.citation.number
2
dc.citation.startPage
307
dc.citation.volume
67
dc.subject.keyword
Lattice QCD
dc.subject.keyword
Parallel
dc.subject.keyword
Optimization
dc.subject.keyword
GPU
dc.subject.keyword
Particle physics
dc.subject.keyword
Computational physics
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7. KISTI 연구성과 > 학술지 발표논문
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