Abstract Persistent puzzles to do with information loss for black holes have stimulated critical reassessment of the domain of validity of semiclassical EFT reasoning in curved spacetimes, particularly in the presence of horizons. We argue here that perturbative predictions about evolution for very long times near a horizon are subject to problems of secular growth — i.e. powers of small couplings come systematically together with growing functions of time. Such growth signals a breakdown of naive perturbative calculations of late-time behaviour, regardless of how small ambient curvatures might be. Similar issues of secular growth also arise in cosmology, and we build evidence for the case that such effects should be generic for gravitation...
AbstractWe comment on the recent arguments by Senatore and Zaldarriaga that loop corrections to the ...
We present a new analytic approach to describe large scale structure formation in the mildly non-lin...
We use standard general relativity to clarify common misconceptions about fundamental aspects of the...
The enhancement of the spectrum of primordial comoving curvature perturbation R can induce the produ...
Abstract: Perturbative corrections to correlation functions for interacting theo-ries in de Sitter s...
We present a scenario for fast growth of cosmological perturbations; $\delta(t) \sim a(t)^s$, $a(t)$...
We study the power-law tails in the evolution of massless fields around a fixed background geometry ...
For distant observers black holes are trapped spacetime domains bounded by apparent horizons. We rev...
© 2017, The Author(s). Linear perturbations of extremal black holes exhibit the Aretakis instability...
In this article, we investigate some features of the perturbation theory in a spatially closed unive...
In this thesis we study the cosmological effects of the primordial curvature perturbation in two dif...
We deal with cosmological perturbation theory in my work. We investigate General Theory of Relativit...
We study analytically, via the Newman-Penrose formalism, the late-time decay of linear electromagnet...
We study the magnitude of semiclassical gravity effects near the formation of a black-hole horizon i...
Cosmological perturbation theory is the standard tool to understand the formation of the large scale...
AbstractWe comment on the recent arguments by Senatore and Zaldarriaga that loop corrections to the ...
We present a new analytic approach to describe large scale structure formation in the mildly non-lin...
We use standard general relativity to clarify common misconceptions about fundamental aspects of the...
The enhancement of the spectrum of primordial comoving curvature perturbation R can induce the produ...
Abstract: Perturbative corrections to correlation functions for interacting theo-ries in de Sitter s...
We present a scenario for fast growth of cosmological perturbations; $\delta(t) \sim a(t)^s$, $a(t)$...
We study the power-law tails in the evolution of massless fields around a fixed background geometry ...
For distant observers black holes are trapped spacetime domains bounded by apparent horizons. We rev...
© 2017, The Author(s). Linear perturbations of extremal black holes exhibit the Aretakis instability...
In this article, we investigate some features of the perturbation theory in a spatially closed unive...
In this thesis we study the cosmological effects of the primordial curvature perturbation in two dif...
We deal with cosmological perturbation theory in my work. We investigate General Theory of Relativit...
We study analytically, via the Newman-Penrose formalism, the late-time decay of linear electromagnet...
We study the magnitude of semiclassical gravity effects near the formation of a black-hole horizon i...
Cosmological perturbation theory is the standard tool to understand the formation of the large scale...
AbstractWe comment on the recent arguments by Senatore and Zaldarriaga that loop corrections to the ...
We present a new analytic approach to describe large scale structure formation in the mildly non-lin...
We use standard general relativity to clarify common misconceptions about fundamental aspects of the...