We generalize the single-field consistency relations to capture not only the leading term in the squeezed limit - going as 1/q(3), where q is the small wavevector - but also the subleading one, going as 1/q(2). This term, for an (n + 1)-point function, is fixed in terms of the variation of the n-point function under a special conformal transformation; this parallels the fact that the 1/q(3) term is related with the scale dependence of the n-point function. For the squeezed limit of the 3-point function, this conformal consistency relation implies that there are no terms going as 1/q(2). We verify that the squeezed limit of the 4-point function is related to the conformal variation of the 3-point function both in the case of canonical slow-roll inflation and in models with reduced speed of sound. In the second case the conformal consistency conditions capture, at the level of observables, the relation among operators induced by the non-linear realization of Lorentz invariance in the Lagrangian. These results mean that, in any single-field model, primordial correlation functions of zeta are endowed with an SO(4, 1) symmetry, with dilations and special conformal transformations non-linearly realized by zeta. We also verify the conformal consistency relations for any n-point function in models with a modulation of the inflaton potential, where the scale dependence is not negligible. Finally, we generalize (some of) the consistency relations involving tensors and soft internal momenta.

Conformal consistency relations for single-field inflation / Paolo Creminelli; Jorge Norena; Marko Simonovic. - In: JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS. - ISSN 1475-7516. - STAMPA. - 2012:(2012), pp. 07.052-07.052. [10.1088/1475-7516/2012/07/052]

Conformal consistency relations for single-field inflation

Marko Simonovic
2012

Abstract

We generalize the single-field consistency relations to capture not only the leading term in the squeezed limit - going as 1/q(3), where q is the small wavevector - but also the subleading one, going as 1/q(2). This term, for an (n + 1)-point function, is fixed in terms of the variation of the n-point function under a special conformal transformation; this parallels the fact that the 1/q(3) term is related with the scale dependence of the n-point function. For the squeezed limit of the 3-point function, this conformal consistency relation implies that there are no terms going as 1/q(2). We verify that the squeezed limit of the 4-point function is related to the conformal variation of the 3-point function both in the case of canonical slow-roll inflation and in models with reduced speed of sound. In the second case the conformal consistency conditions capture, at the level of observables, the relation among operators induced by the non-linear realization of Lorentz invariance in the Lagrangian. These results mean that, in any single-field model, primordial correlation functions of zeta are endowed with an SO(4, 1) symmetry, with dilations and special conformal transformations non-linearly realized by zeta. We also verify the conformal consistency relations for any n-point function in models with a modulation of the inflaton potential, where the scale dependence is not negligible. Finally, we generalize (some of) the consistency relations involving tensors and soft internal momenta.
2012
2012
052
052
Paolo Creminelli; Jorge Norena; Marko Simonovic
File in questo prodotto:
File Dimensione Formato  
Paolo_Creminelli_2012_J._Cosmol._Astropart._Phys._2012_052.pdf

accesso aperto

Tipologia: Pdf editoriale (Version of record)
Licenza: Open Access
Dimensione 613.84 kB
Formato Adobe PDF
613.84 kB Adobe PDF

I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1344634
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 148
  • ???jsp.display-item.citation.isi??? 133
social impact