001440557 000__ 04148cam\a2200601\a\4500 001440557 001__ 1440557 001440557 003__ OCoLC 001440557 005__ 20230309004611.0 001440557 006__ m\\\\\o\\d\\\\\\\\ 001440557 007__ cr\un\nnnunnun 001440557 008__ 211027s2021\\\\si\\\\\\ob\\\\000\0\eng\d 001440557 019__ $$a1287778034 001440557 020__ $$a9789811662348$$q(electronic bk.) 001440557 020__ $$a9811662347$$q(electronic bk.) 001440557 020__ $$z9811662339 001440557 020__ $$z9789811662331 001440557 0247_ $$a10.1007/978-981-16-6234-8$$2doi 001440557 035__ $$aSP(OCoLC)1280462314 001440557 040__ $$aYDX$$beng$$epn$$cYDX$$dGW5XE$$dEBLCP$$dDCT$$dOCLCF$$dOCLCO$$dOCLCQ$$dOCLCO$$dUKAHL$$dOCLCQ 001440557 049__ $$aISEA 001440557 050_4 $$aQC174.52.Y37 001440557 08204 $$a530.14/3$$223 001440557 1001_ $$aYanagihara, Ryosuke. 001440557 24510 $$aDistribution of energy momentum tensor around static charges in lattice simulations and an effective model /$$cRyosuke Yanagihara. 001440557 260__ $$aSingapore :$$bSpringer,$$c2021. 001440557 300__ $$a1 online resource 001440557 336__ $$atext$$btxt$$2rdacontent 001440557 337__ $$acomputer$$bc$$2rdamedia 001440557 338__ $$aonline resource$$bcr$$2rdacarrier 001440557 347__ $$atext file 001440557 347__ $$bPDF 001440557 4901_ $$aSpringer theses,$$x2190-5061 001440557 500__ $$a"Doctoral Thesis accepted by Osaka University, Osaka, Japan." 001440557 504__ $$aIncludes bibliographical references. 001440557 5050_ $$aIntroduction -- Energy Momentum Tensor -- Lattice Field Theory -- Yang-Mills Gradient Flow and Energy Momentum Tensor -- Distribution of Energy Momentum Tensor around Single Static Quark in Deconfined Phase of SU(3) Yang-Mills Theory -- Distribution of Energy Momentum Tensor around Static Quark anti-Quark in Vacuum of SU(3) Yang-Mills Theory -- Distribution of Energy Momentum Tensor around Magnetic Vortex in Abelian-Higgs Model -- Summary and Outlook -- Appendix. 001440557 506__ $$aAccess limited to authorized users. 001440557 520__ $$aThe energy momentum tensor (EMT) is one of the most fundamental observables in physics. Recently, a novel method to define EMT on the basis of the gradient-flow formalism has been proposed. It turned out that the EMT operator can be constructed even on the lattice with the method, which enables non-perturbative computations. This approach has been successfully applied to the analyses on thermodynamic quantities. This book presents the study on spatial EMT distributions around static charges via the gradient flow in lattice simulations based on SU(3) Yang-Mills theory. Static charges are employed as probes to explore complex quantum systems, and EMT then characterizes the response of vacuum as well as hot medium under the existence of the charges, which significantly provides profound and novel insights into the non-perturbative phenomena, such as the confinement of quarks. In addition, the book treats the study on the EMT distribution around a magnetic vortex in the Abelian-Higgs model, which is compared with the lattice result. These achievements open up various future studies for revealing non-trivial aspects of the strong interaction. The book also includes well-organized reviews on general properties of EMT, lattice gauge theory and the gradient-flow formalism with its application to the definition of EMT. They are useful for students and young researchers as a brief introduction to this field. 001440557 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed October 27, 2021). 001440557 650_0 $$aYang-Mills theory. 001440557 650_0 $$aQuantum chromodynamics. 001440557 650_0 $$aLattice gauge theories. 001440557 650_6 $$aThéorie de Yang-Mills. 001440557 650_6 $$aChromodynamique quantique. 001440557 650_6 $$aThéories de jauge sur réseau. 001440557 655_0 $$aElectronic books. 001440557 77608 $$iPrint version:$$aYanagihara, Ryosuke.$$tDistribution of energy momentum tensor around static charges in lattice simulations and an effective model.$$dSingapore : Springer, 2021$$z9811662339$$z9789811662331$$w(OCoLC)1264140098 001440557 830_0 $$aSpringer theses,$$x2190-5061 001440557 852__ $$bebk 001440557 85640 $$3Springer Nature$$uhttps://univsouthin.idm.oclc.org/login?url=https://link.springer.com/10.1007/978-981-16-6234-8$$zOnline Access$$91397441.1 001440557 909CO $$ooai:library.usi.edu:1440557$$pGLOBAL_SET 001440557 980__ $$aBIB 001440557 980__ $$aEBOOK 001440557 982__ $$aEbook 001440557 983__ $$aOnline 001440557 994__ $$a92$$bISE