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GRALE
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| This class can be used to calculate angular diameter distances in a specific kind of cosmology | |
| Implements the ProjectedImagesInterface interface, is only meant to be used inside the genetic algorithm for lens inversion | |
| Implements the ProjectedImagesInterface interface, and takes a GravitationalLens based lens model as input | |
| This class is a base class for fitness calculation code in the GA | |
| Base class defining the methods that a LensFitnessObject can use to calculate the fitness of a specific lens | |
| This class implements a 2D function which can be used to evaluate approximately the mass density corresponding to the deflection field that was calculated | |
| This class allows you to combine several other lenses | |
| Base class for the lens effect by an elliptical lens, based on the information of the circular equivalent | |
| Parameters for a lens with a Gaussian 2D mass density distribution | |
| Describes a lens with a Gaussian mass distribution | |
| Information about a specific Gauss distribution, used by the multiple Gauss lens and the lens inversion routine | |
| Base class for gravitational lens parameters | |
| Base class for gravitational lens implementations | |
| Parameters for a lens consisting of several Gauss distributions | |
| Describes a lens with a mass distribution which is the sum of several Gauss distributions | |
| Parameters for a lens consisting of several Plummer distributions | |
| Describes a lens with a mass distribution which is the sum of several Plummer distributions | |
| Parameters for a lens consisting of several square-shaped distributions | |
| Describes a lens with a mass distribution which is the sum of several square-shaped distributions | |
| Lensing by a spherically symmetric Navarro-Frenk-White profile (NFW) | |
| Parameters for a non-singular isothermal ellipse | |
| Describes a non-singular isothermal ellipse | |
| Parameters for a non-singular isothermal sphere type lens | |
| Describes a non-singular isothermal sphere type lens | |
| Parameters for a lens with a Plummer density distribution | |
| Describes a lens with a Plummer mass distribution | |
| Information about a specific Plummer distribution, used by the multiple Plummer lens and the lens inversion routine | |
| Parameters for a point mass lens | |
| Describes a point mass lens | |
| Bla | |
| This class implements a 2D function which can be used to evaluate the mass density of a lens at a specific point | |
| Parameters for a singular isothermal ellipse | |
| Describes a singular isothermal ellipse | |
| Parameters for a singular isothermal sphere (SIS) | |
| A singular isothermal sphere based lens | |
| Parameters for a lens with a square mass density distribution | |
| Describes a lens with a square mass distribution | |
| Information about a specific square distribution, used by the multiple square lens and the lens inversion routine | |
| Base class for circularly symmetric lenses | |
| This class can be used to integrate a 2D function over a circular area | |
| This can be used to generate numbers according to a distribution with two peaks, one at 0 and one at 1 | |
| This can be used to generate numbers according to a gaussian distribution with a specific mean and dispersion | |
| Can be used to interpolate gridded data | |
| Class which can represent a line | |
| This can be used to generate positive numbers with a peak at zero | |
| This class can be used to represent a polygon | |
| Base class for generating random numbers according to a specific probability distribution | |
| Base class for a 1D function of which the derivative can be calculated at each point | |
| Base class for a 1D function | |
| Base class for an object which can integrate a function over some range | |
| Base class for a 2D function of which the derivatives can be calculated at each point | |
| Base class for a 2D function | |
| Base class for an object which can integrate a function over some area | |
| Class which can hold the corner points of a rectangle | |
| Integrate a 2D function over a rectangular area | |
| A version of a student-t distribution; this has a longer tail than a gaussian | |
| This class can be used to represent a triangle | |
| Holds the indices of the points which form a triangle | |
| An object of this class can be used to create a triangulation from a set of points | |
| Generates random numbers according to a uniform distribution | |
| Represents a 2D vector | |
| Represents a 2D vector with integer endpoint coordinates | |
| STL namespace |
1.8.1.1