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Anomaly-induced Quadrupole Moment of the Neutron in Magnetic Field

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arxiv 1104.0998 v2 pith:DPP7SPW6 submitted 2011-04-06 hep-ph nucl-exnucl-th

Anomaly-induced Quadrupole Moment of the Neutron in Magnetic Field

classification hep-ph nucl-exnucl-th
keywords magneticmomentquadrupoleneutronfieldchiralanomalyneutrons
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

The neutrons cannot possess a quadrupole moment in the vacuum. Nevertheless, we show that in the presence of an external magnetic field the neutrons acquire a new type of quadrupole moment $Q^{ij}= \chi\,\sigma^i B^j$ involving the components of spin and magnetic field. This "chiral magnetic" quadrupole moment arises from the interplay of the chiral anomaly and the magnetic field; we estimate its value for the neutron in the static limit, and find $\chi \simeq 1.35\cdot10^{-2}\,{\rm fm}^4$. The detection of the quadrupole moment of the neutron would provide a novel test of the role of the chiral anomaly in low-energy QCD and can be possible in the presence of both magnetic and inhomogeneous electric fields. The quadrupole moment of the neutron may affect e.g. the properties of neutron stars and magnetars.

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