2018
DOI: 10.1103/physrevd.97.043523
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Time-dependent mass of cosmological perturbations in the hybrid and dressed metric approaches to loop quantum cosmology

Abstract: Loop quantum cosmology has recently been applied in order to extend the analysis of primordial perturbations to the Planck era and discuss the possible effects of quantum geometry on the cosmic microwave background. Two approaches to loop quantum cosmology with admissible ultraviolet behavior leading to predictions that are compatible with observations are the so-called hybrid and dressed metric approaches. In spite of their similarities and relations, we show in this work that the effective equations that the… Show more

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Cited by 31 publications
(41 citation statements)
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References 61 publications
(174 reference statements)
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“…We excluded that model as an interesting candidate only when combining luminosity-distance observations with constraints on the propagation speed s GW of the tensor perturbation. It may be that other LQC scenarios, such as the hybrid-quantization approach [156,157], could evade speed constraints (because s GW = 1 there) and, at the same time, admit a quantum state with sizable IR corrections.…”
Section: Loop Quantum Cosmologymentioning
confidence: 99%
“…We excluded that model as an interesting candidate only when combining luminosity-distance observations with constraints on the propagation speed s GW of the tensor perturbation. It may be that other LQC scenarios, such as the hybrid-quantization approach [156,157], could evade speed constraints (because s GW = 1 there) and, at the same time, admit a quantum state with sizable IR corrections.…”
Section: Loop Quantum Cosmologymentioning
confidence: 99%
“…For details about the hybrid quantization of cosmological perturbations, we refer the reader to Refs. [66,68,69,72,77] and references therein.…”
Section: B Equations Of Motion For Cosmological Perturbationsmentioning
confidence: 99%
“…In the hybrid quantization approach to cosmological perturbations, the effective equation of motion for the cosmological scalar and tensor perturbations are described, respectively, by [72,77]…”
Section: B Equations Of Motion For Cosmological Perturbationsmentioning
confidence: 99%
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