Status: Bibliographieeintrag
Standort: ---
Exemplare:
---
| Online-Ressource |
Verfasst von: | Fedeli, Cosimo [VerfasserIn]  |
| Bartelmann, Matthias [VerfasserIn]  |
| Moscardini, Lauro [VerfasserIn]  |
Titel: | Constraining primordial non-Gaussianity with cosmological weak lensing |
Titelzusatz: | shear and flexion |
Verf.angabe: | C. Fedeli, M. Bartelmann, L. Moscardini |
E-Jahr: | 2012 |
Jahr: | 18 Sep 2012 |
Umfang: | 30 S. |
Fussnoten: | Gesehen am 21.09.2017 |
Titel Quelle: | Enthalten in: De.arxiv.org |
Ort Quelle: | [S.l.] : Arxiv.org, 1991 |
Jahr Quelle: | 2012 |
Band/Heft Quelle: | (2012) Artikel-Nummer 1204.2229, 30 Seiten |
Abstract: | We examine the cosmological constraining power of future large-scale weak lensing surveys on the model of \emph{Euclid}, with particular reference to primordial non-Gaussianity. Our analysis considers several different estimators of the projected matter power spectrum, based on both shear and flexion, for which we review the covariances and Fisher matrices. The bounds provided by cosmic shear alone for the local bispectrum shape, marginalized over $\sigma_8$, are at the level of $\Delta f_\mathrm{NL} \sim 100$. We consider three additional bispectrum shapes, for which the cosmic shear constraints range from $\Delta f_\mathrm{NL}\sim 340$ (equilateral shape) up to $\Delta f_\mathrm{NL}\sim 500$ (orthogonal shape). The competitiveness of cosmic flexion constraints against cosmic shear ones depends on the galaxy intrinsic flexion noise, that is still virtually unconstrained. Adopting the very high value that has been occasionally used in the literature results in the flexion contribution being basically negligible with respect to the shear one, and for realistic configurations the former does not improve significantly the constraining power of the latter. Since the flexion noise decreases with decreasing scale, by extending the analysis up to $\ell_\mathrm{max} = 20,000$ cosmic flexion, while being still subdominant, improves the shear constraints by $\sim 10%$ when added. However on such small scales the highly non-linear clustering of matter and the impact of baryonic physics make any error estimation uncertain. By considering lower, and possibly more realistic, values of the flexion intrinsic shape noise results in flexion constraining power being a factor of $\sim 2$ better than that of shear, and the bounds on $\sigma_8$ and |
URL: | Bitte beachten Sie: Dies ist ein Bibliographieeintrag. Ein Volltextzugriff für Mitglieder der Universität besteht hier nur, falls für die entsprechende Zeitschrift/den entsprechenden Sammelband ein Abonnement besteht oder es sich um einen OpenAccess-Titel handelt.
Kostenfrei: Volltext: http://arxiv.org/abs/1204.2229 |
Datenträger: | Online-Ressource |
Sprache: | eng |
Sach-SW: | Astrophysics - Cosmology and Nongalactic Astrophysics |
K10plus-PPN: | 1563692090 |
Verknüpfungen: | → Sammelwerk |
Constraining primordial non-Gaussianity with cosmological weak lensing / Fedeli, Cosimo [VerfasserIn]; 18 Sep 2012 (Online-Ressource)
68168256