On the effective field theory of heterotic vacua

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Abstract

The effective field theory of heterotic vacua that realise [InlineEquation not available: see fulltext.] preserving N= 1 supersymmetry is studied. The vacua in question admit large radius limits taking the form [InlineEquation not available: see fulltext.], with [InlineEquation not available: see fulltext.] a smooth threefold with vanishing first Chern class and a stable holomorphic gauge bundle [InlineEquation not available: see fulltext.]. In a previous paper we calculated the kinetic terms for moduli, deducing the moduli metric and Kähler potential. In this paper, we compute the remaining couplings in the effective field theory, correct to first order in α‵. In particular, we compute the contribution of the matter sector to the Kähler potential and derive the Yukawa couplings and other quadratic fermionic couplings. From this we write down a Kähler potential [InlineEquation not available: see fulltext.] and superpotential [InlineEquation not available: see fulltext.].

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APA

McOrist, J. (2018). On the effective field theory of heterotic vacua. Letters in Mathematical Physics, 108(4), 1031–1081. https://doi.org/10.1007/s11005-017-1025-0

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