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      Charmonium Spectroscopy in Strong Magnetic Fields by QCD Sum Rules: S-Wave Ground States

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          Abstract

          We investigate quarkonium mass spectra in external constant magnetic fields by using QCD sum rules. We first discuss a general framework of QCD sum rules necessary for properly extracting meson spectra from current correlators computed in the presence of strong magnetic fields, that is, a consistent treatment of mixing effects caused in the mesonic degrees of freedom. We then implement operator product expansions for pseudoscalar and vector heavy-quark current correlators by taking into account external constant magnetic fields as operators, and obtain mass shifts of the lowest-lying bound states \(\eta_c\) and \(J/\psi\) in the static limit with their vanishing spatial momenta. Comparing results from QCD sum rules with those from hadronic effective theories, we find that the dominant origin of mass shifts comes from a mixing between \(\eta_c\) and \(J/\psi\) with a longitudinal spin polarization, accompanied by other subdominant effects such as mixing with higher excited states and continua.

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          Integration Technology of 30nm Generation Multi-Level NAND Flash for 64Gb NAND Flash Memory

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            Author and article information

            Journal
            2014-11-27
            2015-02-22
            Article
            10.1103/PhysRevD.91.045025
            1411.7675
            367a01da-5483-4daf-bac3-46fcdb8c5abb

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

            History
            Custom metadata
            BNL-107204-2014-JA, RBRC-1102, RIKEN-QHP-172, KEK-TH-1781, YITP-14-90
            Phys. Rev. D 91, 045025 (2015)
            24 pages, 12 figures. Comments inserted in the last paragraph of Sec. II; One reference added; Published in PRD; Title slightly changed upon request by PRD
            hep-ph hep-lat nucl-ex nucl-th

            High energy & Particle physics,Nuclear physics
            High energy & Particle physics, Nuclear physics

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