25,192 research outputs found

    Analysis of the spin structure function g2(x,Q2)g_2(x,Q^2) and twist-3 operators

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    We discuss the spin-dependent structure function g2(x,Q2)g_2(x,Q^2) in the framework of the operator product expansion. It is noted that the anomalous dimensions and coefficient functions for the twist-3 gluon-field-dependent operators depend on the choice of the operator basis. The role played by the operators proportional to the equation of motion is clarified.Comment: 10 pages, Latex, 1 figure (.ps files) appended after \end{document} as an uuencoded compressed tar fil

    The use of the chatter mode in self-adaptive systems

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    Chatter mode is used advantageously if the ideal model dynamics is described by a switching function, the chatter mode is reached quickly and then sustained, the chatter frequency is reduced, and any zero in the plant transfer function is cancelled

    Employment Quota System in Japan

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    Employment_QuotaJapanNo83.pdf: 2485 downloads, before Oct. 1, 2020

    Heavy quark dynamics for charm and bottom flavor on Fermi surface at zero temperature

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    We discuss the dynamics in finite density medium including a heavy impurity particle (hadron or quark) with a heavy flavor, charm and bottom, at zero temperature. As a system, we consider a Dˉ\bar{D} (BB) meson embedded in nuclear matter as a heavy impurity boson with SU(2) isospin symmetry. As another system, we also consider a charm (bottom) quark embedded in quark matter as a heavy impurity fermion with SU(3) color symmetry. We suppose a vector current interaction with SU(nn) symmetry (n2n \ge 2) for the fermion composing the Fermi surface and the embedded heavy impurity particle, and calculate the scattering amplitude perturbatively for the small coupling constant up to one-loop level. We obtain that the scattering amplitude has a logarithmic enhancement in the large mass limit of the heavy impurity particle, and show that the perturbative calculation breaks down for any small coupling constant in this limit.Comment: 25 pages, 2 figure
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