Leading-order exponential contributions to higher-order correlators in rapid-turn inflation cancel exactly in the in-in formalism, leaving order-one non-Gaussianity and preserving perturbative control.
On backreaction effects in geometrical destabilisation of inflation
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abstract
We study the geometrical instability arising in multi-field models of inflation with negatively-curved field space. We analyse how the homogeneous background evolves in presence of geometrical destabilisation, and show that, in simple models, a kinematical backreaction effect takes place that shuts off the instability. We also follow the evolution of the unstable scalar fluctuations. We show that they assist the kinematical backreaction while remaining in the perturbative regime. We conclude that, in the simplest models of geometrical destabilisation, inflation does not end prematurely, but rather proceeds along a modified, sidetracked, field-space trajectory.
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Mild Non-Gaussianities under Perturbative Control from Rapid-Turn Inflation Models
Leading-order exponential contributions to higher-order correlators in rapid-turn inflation cancel exactly in the in-in formalism, leaving order-one non-Gaussianity and preserving perturbative control.