arXiv · hep-th/9508078
Infrared behavior of Closed Superstrings in Strong Magnetic and Gravitational Fields
Abstract
A large class of four-dimensional supersymmetric ground states of closed superstrings with a non-zero mass gap are constructed. For such ground states we turn on chromo-magnetic fields as well as curvature. The exact spectrum as function of the chromo-magnetic fields and curvature is derived. We examine the behavior of the spectrum, and find that there is a maximal value for the magnetic field $H_{\rm max}\sim M_{\rm planck}^2$. At this value all states that couple to the magnetic field become infinitely massive and decouple. We also find tachyonic instabilities for strong background fields of the order ${\cal O}(μM_{\rm planck})$ where $μ$ is the mass gap of the theory. Unlike the field theory case, we find that such ground states become stable again for magnetic fields of the order ${\cal O}(M^2_{\rm planck})$. The implications of these results are discussed.
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Elias Kiritsis, Costas Kounnas. 1995-10-10. Infrared behavior of Closed Superstrings in Strong Magnetic and Gravitational Fields. https://doi.org/10.1016/0550-3213(95)00540-2
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