Javascript must be enabled to continue!
Euclid: Reconstruction of weak-lensing mass maps for non-Gaussianity studies
View through CrossRef
Weak lensing, which is the deflection of light by matter along the line of sight, has proven to be an efficient method for constraining models of structure formation and reveal the nature of dark energy. So far, most weak-lensing studies have focused on the shear field that can be measured directly from the ellipticity of background galaxies. However, within the context of forthcoming full-sky weak-lensing surveys such asEuclid, convergence maps (mass maps) offer an important advantage over shear fields in terms of cosmological exploitation. While it carry the same information, the lensing signal is more compressed in the convergence maps than in the shear field. This simplifies otherwise computationally expensive analyses, for instance, non-Gaussianity studies. However, the inversion of the non-local shear field requires accurate control of systematic effects caused by holes in the data field, field borders, shape noise, and the fact that the shear is not a direct observable (reduced shear). We present the two mass-inversion methods that are included in the officialEucliddata-processing pipeline: the standard Kaiser & Squires method (KS), and a new mass-inversion method (KS+) that aims to reduce the information loss during the mass inversion. This new method is based on the KS method and includes corrections for mass-mapping systematic effects. The results of the KS+ method are compared to the original implementation of the KS method in its simplest form, using theEuclidFlagship mock galaxy catalogue. In particular, we estimate the quality of the reconstruction by comparing the two-point correlation functions and third- and fourth-order moments obtained from shear and convergence maps, and we analyse each systematic effect independently and simultaneously. We show that the KS+ method substantially reduces the errors on the two-point correlation function and moments compared to the KS method. In particular, we show that the errors introduced by the mass inversion on the two-point correlation of the convergence maps are reduced by a factor of about 5, while the errors on the third- and fourth-order moments are reduced by factors of about 2 and 10, respectively.
EDP Sciences
S. Pires
V. Vandenbussche
V. Kansal
R. Bender
L. Blot
D. Bonino
A. Boucaud
J. Brinchmann
V. Capobianco
J. Carretero
M. Castellano
S. Cavuoti
R. Clédassou
G. Congedo
L. Conversi
L. Corcione
F. Dubath
P. Fosalba
M. Frailis
E. Franceschi
M. Fumana
F. Grupp
F. Hormuth
S. Kermiche
M. Knabenhans
R. Kohley
B. Kubik
M. Kunz
S. Ligori
P. B. Lilje
I. Lloro
E. Maiorano
O. Marggraf
R. Massey
G. Meylan
C. Padilla
S. Paltani
F. Pasian
M. Poncet
D. Potter
F. Raison
J. Rhodes
M. Roncarelli
R. Saglia
P. Schneider
A. Secroun
S. Serrano
J. Stadel
P. Tallada Crespí
I. Tereno
R. Toledo-Moreo
Y. Wang
Title: Euclid: Reconstruction of weak-lensing mass maps for non-Gaussianity studies
Description:
Weak lensing, which is the deflection of light by matter along the line of sight, has proven to be an efficient method for constraining models of structure formation and reveal the nature of dark energy.
So far, most weak-lensing studies have focused on the shear field that can be measured directly from the ellipticity of background galaxies.
However, within the context of forthcoming full-sky weak-lensing surveys such asEuclid, convergence maps (mass maps) offer an important advantage over shear fields in terms of cosmological exploitation.
While it carry the same information, the lensing signal is more compressed in the convergence maps than in the shear field.
This simplifies otherwise computationally expensive analyses, for instance, non-Gaussianity studies.
However, the inversion of the non-local shear field requires accurate control of systematic effects caused by holes in the data field, field borders, shape noise, and the fact that the shear is not a direct observable (reduced shear).
We present the two mass-inversion methods that are included in the officialEucliddata-processing pipeline: the standard Kaiser & Squires method (KS), and a new mass-inversion method (KS+) that aims to reduce the information loss during the mass inversion.
This new method is based on the KS method and includes corrections for mass-mapping systematic effects.
The results of the KS+ method are compared to the original implementation of the KS method in its simplest form, using theEuclidFlagship mock galaxy catalogue.
In particular, we estimate the quality of the reconstruction by comparing the two-point correlation functions and third- and fourth-order moments obtained from shear and convergence maps, and we analyse each systematic effect independently and simultaneously.
We show that the KS+ method substantially reduces the errors on the two-point correlation function and moments compared to the KS method.
In particular, we show that the errors introduced by the mass inversion on the two-point correlation of the convergence maps are reduced by a factor of about 5, while the errors on the third- and fourth-order moments are reduced by factors of about 2 and 10, respectively.
Related Results
Euclid preparation
Euclid preparation
Context. The European Space Agency’s Euclid mission is one of a raft of forthcoming large-scale cosmology surveys that will map the large-scale structure in the Universe with unpre...
Euclid: Searching for pair-instability supernovae with the Deep Survey
Euclid: Searching for pair-instability supernovae with the Deep Survey
Pair-instability supernovae are theorized supernovae that have not yet been observationally confirmed. They are predicted to exist in low-metallicity environments. Because overall ...
The Black Mass as Play: Dennis Wheatley's The Devil Rides Out
The Black Mass as Play: Dennis Wheatley's The Devil Rides Out
Literature—at least serious literature—is something that we work at. This is especially true within the academy. Literature departments are places where workers labour over texts c...
Euclid
: Constraints on f(R) cosmologies from the spectroscopic and photometric primary probes
Euclid
: Constraints on f(R) cosmologies from the spectroscopic and photometric primary probes
We forecast the constraints that the
Euclid
mission will place on the Hu–Sawicki
f
(
...
Coexisting Granulomatous Mastitis and Breast Cancer: A Systematic Review
Coexisting Granulomatous Mastitis and Breast Cancer: A Systematic Review
Abstract
Introduction: Granulomatous mastitis (GM) is a rare inflammatory breast disease that mimics carcinoma. GM can coexist with breast cancer (BC), though the relationship rema...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
KiDS-1000 methodology: Modelling and inference for joint weak gravitational lensing and spectroscopic galaxy clustering analysis
KiDS-1000 methodology: Modelling and inference for joint weak gravitational lensing and spectroscopic galaxy clustering analysis
We present the methodology for a joint cosmological analysis of weak gravitational lensing from the fourth data release of the ESO Kilo-Degree Survey (KiDS-1000) and galaxy cluster...
Breast Carcinoma within Fibroadenoma: A Systematic Review
Breast Carcinoma within Fibroadenoma: A Systematic Review
Abstract
Introduction
Fibroadenoma is the most common benign breast lesion; however, it carries a potential risk of malignant transformation. This systematic review provides an ove...

