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SetSampleMaterial.h
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SetSampleMaterial.h
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// Mantid Repository : https://github.com/mantidproject/mantid
//
// Copyright © 2009 ISIS Rutherford Appleton Laboratory UKRI,
// NScD Oak Ridge National Laboratory, European Spallation Source,
// Institut Laue - Langevin & CSNS, Institute of High Energy Physics, CAS
// SPDX - License - Identifier: GPL - 3.0 +
#pragma once
#include "MantidAPI/DistributedAlgorithm.h"
#include "MantidDataHandling/ReadMaterial.h"
#include "MantidKernel/NeutronAtom.h"
namespace Mantid {
namespace DataHandling {
/**
This class allows the shape of the sample to be defined by using the allowed
XML
expressions
@author Vickie Lynch, SNS
@date 2/7/2013
*/
class DLLExport SetSampleMaterial : public Mantid::API::DistributedAlgorithm {
public:
/// Algorithm's name
const std::string name() const override;
/// Summary of algorithms purpose
const std::string summary() const override {
return "Sets the neutrons information in the sample.";
}
/// Algorithm's version
int version() const override;
const std::vector<std::string> seeAlso() const override {
return {"SetSample", "AbsorptionCorrection", "CreateSampleShape",
"CalculateSampleTransmission"};
}
/// Algorithm's category for identification
const std::string category() const override;
std::map<std::string, std::string> validateInputs() override;
private:
/// Initialisation code
void init() override;
/// Execution code
void exec() override;
/// Print out the list of information for the material
void fixNeutron(PhysicalConstants::NeutronAtom &neutron, double coh_xs,
double inc_xs, double abs_xs, double tot_xs);
ReadMaterial::MaterialParameters params;
};
} // namespace DataHandling
} // namespace Mantid