Input Product: Parameters E/B modes on the full sky

Metadata

Data product name

DpdTwoDMassParamsConvergenceSphere

Data product custodian

WLTWODMASS

Name of the Schema file

euc-le3-wl-twodmass-ParamsConvergenceSphere.xsd

Last Edited for DPDD Version

1.1

Processing Element(s) creating/using the data product

Creators:

  • None: It is a parameter file to store inputs.

Consumers:

  • LE3_2D_MASS_WL_KS

Processing function using the data product

LE3_2D_MASS_WL_KS

Proposed for inclusion in EAS/SAS

This product is proposed for inclusion in the SAS: No.

Data Product Elements

Header

object of type sys:genericHeader

Data

object of type wl2dmass:twoDMassParamsConvergenceSphere

QualityFlags

object of type dqc:sqfPlaceHolder

Parameters

object of type ppr:genericKeyValueParameters

Detailed Description of the Data Product

This product contains inputs to compute the 2D convergence maps on the sphere.

Running Parameters

To compute the spherical E/B convergence maps, the following set of parameters is needed:

  • general parameters:

    • NResamples: the number of resampling that needs to be performed for STD maps [int]

    • McSeed: the seed of the random number generator [int]

    • BinningStrategy: the strategy to perform redshift binning [equidist|equipop].

    • SgnE1: the sign to apply to the shear first component [1|-1]

    • SgnE2: the sign to apply to the shear second component [1|-1]

  • how to handle reduced shear:

    • ReducedShearCorrection: flag to compute the reduced shear [bool]

    • RSThreshold: threshold to perform hard-thresholding in the reduced shear iteration

    • GaussSTD: the standard deviation for the Gaussian filter [double]

  • denoising parameters for final map: if Gaussian smoothing is performed, the value of the

    • DenoisingAlgo: name of denoising algo [string, “GaussFilter”]

    • GaussSTD: the standard deviation for the Gaussian filter [double]

  • how to handle the pixelization:

    • Nside: HEALPix nside of the final map [int]

  • how to handle redshift:

    • legacy PHZ redshifts:

      • Nbins: the number of redshift bins [int]

      • and a RedshiftBin list containing as elements:

        • ZMin: min redshifts for the patches considered, catalogue minimum if -1 [double]

        • ZMax: max redshifts for the patches considered, catalogue maximum if -1 [double]

        Note

        If there are as many bins defined in the list as indicated by the value Nbins, each bin is defined as is (here, do not use -1). Otherwise, the bins are automatically built according to the chosen BinningStrategy and the extrema set in the first RedshiftBin.

    • tomographic binning (if defined, tomographic binning is used and legacy is ignored):

      • TomBin: a list containing a sequence of space separated bin indexes [dtd:listOfInteger]

  • how to handle gaps in data:

    • NInpaint: number of inpainting iterations [int]

    • ApplyConstraints: true, if a constraint is applied to have equal variance in/out of the masked area per wavelet scale [bool]

    • NInpScale: number of wavelet scales for inpainting [int]