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magnetic moment

by Er Kurza, Tao Liua, Peter Marquardb, Er V. Smirnovc, Vladimir A. Smirnovd, Matthias Steinhausera
"... corrections to the muon anomalous ..."
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corrections to the muon anomalous

Neutrino Magnetic Moment

by A. B. Balantekin , 2006
"... Abstract. Current experimental and observational limits on the neutrino magnetic moment are reviewed. Implications of the recent results from the solar and reactor neutrino experiments for the value of the neutrino magnetic moment are discussed. It is shown that spin-flavor precession in the Sun is ..."
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Abstract. Current experimental and observational limits on the neutrino magnetic moment are reviewed. Implications of the recent results from the solar and reactor neutrino experiments for the value of the neutrino magnetic moment are discussed. It is shown that spin-flavor precession in the Sun

MAGNETIC MOMENT OF BARYONS

by unknown authors
"... We propose that the magnetic moment formulae of baryons may be determined by quantum numbers. This is new type of magnetic moment formula, and also agrees better with CBM calculation (Thomas et al., 1981; and Thunberg et al., 1982) and with the experimental values. It is also similar to correspondin ..."
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We propose that the magnetic moment formulae of baryons may be determined by quantum numbers. This is new type of magnetic moment formula, and also agrees better with CBM calculation (Thomas et al., 1981; and Thunberg et al., 1982) and with the experimental values. It is also similar

Magnetic moments of antidecuplet pentaquarks

by R. Bijker, M. M. Giannini, E. Santopinto , 2004
"... We analyze the magnetic moments of the exotic pentaquarks of the flavor antidecuplet in the constituent quark model for the cases in which the ground state is in an orbital L p = 0 + or a L p = 1 − state. We derive a set of sum rules for the magnetic moments of antidecuplet baryons and their relatio ..."
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We analyze the magnetic moments of the exotic pentaquarks of the flavor antidecuplet in the constituent quark model for the cases in which the ground state is in an orbital L p = 0 + or a L p = 1 − state. We derive a set of sum rules for the magnetic moments of antidecuplet baryons

THE QUARK COLOR MAGNETIC MOMENT

by unknown authors , 1979
"... The quark color magnetic moment is examined in the framework of the interaction of a quark with a constant external color magnetic field. Quark and gluon propagators in the external field are evaluated and shown to lead to a g-Ii 3a s r&5E a field dependent anomalous magnetic moment u =--2mc 4T ..."
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The quark color magnetic moment is examined in the framework of the interaction of a quark with a constant external color magnetic field. Quark and gluon propagators in the external field are evaluated and shown to lead to a g-Ii 3a s r&5E a field dependent anomalous magnetic moment u =--2mc 4T

Magnetic Moment of Photon

by Ziya Saglam, Gokhan Sahin
"... We have calculated the intrinsic magnetic moment of a photon through the intrinsic magnetic moment of a gamma photon created as a result of the electron-positron annihilation with the an-gular frequency ω. We show that a photon propagating in z direction with an angular frequency ω carries a magneti ..."
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We have calculated the intrinsic magnetic moment of a photon through the intrinsic magnetic moment of a gamma photon created as a result of the electron-positron annihilation with the an-gular frequency ω. We show that a photon propagating in z direction with an angular frequency ω carries a

Magnetic Moments and Masses of Hyperons

by Sylwester Kornowski
"... Abstract: Here within the lacking part of ultimate theory, i.e. the Everlasting Theory, I calculated the magnetic moments and rigorous masses of hyperons. The theoretical results overlap with experimental data or are very close to them. 1. ..."
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Abstract: Here within the lacking part of ultimate theory, i.e. the Everlasting Theory, I calculated the magnetic moments and rigorous masses of hyperons. The theoretical results overlap with experimental data or are very close to them. 1.

Magnetic Moments of Heavy Baryons

by M. C. Bañuls, I. Scimemi, J. Bernabéu, V. Giménez, A. Pich , 1999
"... First non-trivial chiral corrections to the magnetic moments of triplet (T) and sextet (S(∗)) heavy baryons are calculated using Heavy Hadron Chiral Perturbation Theory. Since magnetic moments of the T-hadrons vanish in the limit of infinite heavy quark mass (mQ → ∞), these corrections occur at orde ..."
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First non-trivial chiral corrections to the magnetic moments of triplet (T) and sextet (S(∗)) heavy baryons are calculated using Heavy Hadron Chiral Perturbation Theory. Since magnetic moments of the T-hadrons vanish in the limit of infinite heavy quark mass (mQ → ∞), these corrections occur

Magnetic Moments of Dirac Neutrinos

by Nicole F. Bell, V. Cirigliano, M. J. Ramsey-musolf, P. Vogel, Mark B. Wise , 2006
"... Abstract. The existence of a neutrino magnetic moment implies contributions to the neutrino mass via radiative corrections. We derive model-independent "naturalness " upper bounds on the magnetic moments of Dirac neutrinos, generated by physics above the electroweak scale. The neutrino mas ..."
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Abstract. The existence of a neutrino magnetic moment implies contributions to the neutrino mass via radiative corrections. We derive model-independent "naturalness " upper bounds on the magnetic moments of Dirac neutrinos, generated by physics above the electroweak scale. The neutrino

Masses and magnetic moments of pentaquarks

by R. Bijker, M. M. Giannini, E. Santopinto , 2004
"... We discuss the spectroscopy of q 4 ¯q pentaquarks. The quantum numbers of the ground state depend on the interplay between spin-flavor and orbital contributions to the energy. The magnetic moments of the lowest pentaquark state with negative and positive parity are found to be 0.382 µN and 0.089 µN, ..."
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We discuss the spectroscopy of q 4 ¯q pentaquarks. The quantum numbers of the ground state depend on the interplay between spin-flavor and orbital contributions to the energy. The magnetic moments of the lowest pentaquark state with negative and positive parity are found to be 0.382 µN and 0.089 µ
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