The fitted function for y-Space converted values is as described by G. Romanelli. [1].

Where
is given by:

The
Final State Effects (FSE) correction is applied as an additive
correction expressed as:
![-A_{3}(q)\frac{d^{3}}{dy^{3}}J(y) =
\frac{\sigma_{x}^{4} + \sigma_{x}^{4} + \sigma_{x}^{4}}
{9 \sqrt{2 \pi} \sigma_{x} \sigma_{y} \sigma_{z} q}
\int_{0}^{1} d(cos \theta)
\int_{0}^{\frac{\pi}{2}} d \phi
\left[
\frac{y^{3}}{S^{2}(\theta, \phi)^{4}}
-3 \frac{y}{S^{2}(\theta, \phi)^{2}}
\right]
S^{2}(\theta, \phi)
exp
\left(
-\frac{y^{2}}
{2 S^{2}(\theta, \phi)}
\right)](../_images/math/9a45c376a3ffe315a49ff4dbf43b2faebf463afd.png)
| Name | Type | Default | Description |
|---|---|---|---|
| IntegrationSteps | Integer | 256 | Length of each dimension of integration grid (must be even) |
| Name | Default | Description |
|---|---|---|
| Mass | 0.0 | Atomic mass (amu) |
| Intensity | 1.0 | Gaussian intensity parameter |
| SigmaX | 1.0 | Sigma X parameter |
| SigmaY | 1.0 | Sigma Y parameter |
| SigmaZ | 1.0 | Sigma Z parameter |
C++ source: MultivariateGaussianComptonProfile.cpp
C++ header: MultivariateGaussianComptonProfile.h