Spinorial description for Lorentzian $\mathfrak{hs}$-IKKT
Abstract
We introduce a novel spinorial description for the higher-spin gauge theory induced by the IKKT matrix model on an FLRW spacetime with Lorentzian signature, called Lorentzian -IKKT theory. The new description is based on Weyl spinors transforming under the space-like isometry subgroup of the structure group . It allows us to exploit the full power of the spinor formalism in Lorentzian signature, in contrast to a previous formalism based on the compact subgroup of . Some cubic vertices of the Yang-Mills sector and the corresponding scattering amplitudes are computed. We observe that the -point (for ) tree-level amplitudes are typically non-trivial on-shell, but exponentially suppressed in the late-time regime. While Lorentz invariance of the higher-spin amplitudes is not manifest, it is expected to be restored by higher-spin gauge invariance.
Cite
@article{arxiv.2312.16110,
title = {Spinorial description for Lorentzian $\mathfrak{hs}$-IKKT},
author = {Harold C. Steinacker and Tung Tran},
journal= {arXiv preprint arXiv:2312.16110},
year = {2023}
}
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