Maxwell electrodynamics modified by a CPT-odd dimension-five higher-derivative term

被引:22
|
作者
Ferreira Jr, Manoel M. [1 ]
Lisboa-Santos, Leticia [1 ]
Maluf, Roberto, V [1 ]
Schreck, Marco [1 ]
机构
[1] Univ Fed Maranhao, Dept Fis, Campus Univ Bacanga, BR-65080805 Sao Luis, Maranhao, Brazil
关键词
LORENTZ-SYMMETRY-BREAKING; RADIATIVELY INDUCED LORENTZ; INVARIANCE VIOLATION; GAUGE-INVARIANCE; PHOTON; TESTS; EXTENSION; HYDROGEN; GENERATION; STRINGS;
D O I
10.1103/PhysRevD.100.055036
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In this paper, we consider an electrodynamics of higher derivatives coupled to a Lorentz-violating background tensor. Specifically, we are interested in a dimension-five term of the CPT-odd sector of the nonminimal Standard Model extension. By a particular choice of the operator (k) over cap (AF), we obtain a higher-derivative version of the Carroll-Field-Jackiw (CFJ) term, 1/2 epsilon(kappa lambda mu nu)A(lambda)D(kappa)square F-mu nu, with a Lorentz-violating background vector D-kappa. This modification is subject to being investigated. We calculate the propagator of the theory and from its poles, we analyze the dispersion relations of the isotropic and anisotropic sectors. We verify that classical causality is valid for all parameter choices, but that unitarity of the theory is generally not assured. The latter is found to break down for certain configurations of the background field and momentum. In an analog way, we also study a dimension-five anisotropic higher-derivative CFJ term, which is written as epsilon(kappa lambda mu nu)A(lambda)T(kappa)(T . partial derivative)(2) F(mu nu )and is directly linked to the photon sector of Myers-Pospelov theory. Within the second model, purely timelike and spacelike T-kappa are considered. For the timelike choice, one mode is causal, whereas the other is noncausal. Unitarity is conserved, in general, as long as the energy stays real-even for the noncausal mode. For the spacelike scenario, causality is violated when the propagation direction lies within certain regimes. However, there are particular configurations preserving unitarity and strong numerical indications exist that unitarity is guaranteed for all purely spacelike configurations. The results improve our understanding of nonminimal CPT-odd extensions of the electromagnetic sector.
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页数:19
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