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1 | /*
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2 | ---- Hector the simulator ----
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3 | A fast simulator of particles through generic beamlines.
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4 | J. de Favereau, X. Rouby ~~~ hector_devel@cp3.phys.ucl.ac.be
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5 |
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6 | http://www.fynu.ucl.ac.be/hector.html
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7 |
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8 | Centre de Physique des Particules et de Phénoménologie (CP3)
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9 | Université Catholique de Louvain (UCL)
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10 | */
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11 |
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12 | /// \file H_HorizontalQuadrupole.cc
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13 | /// \brief Classes aiming at simulating horizontal quadrupoles in beamline
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14 |
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15 | // local #includes
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16 | #include "H_HorizontalQuadrupole.h"
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17 |
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18 | void H_HorizontalQuadrupole::setMatrix(const float eloss, const float p_mass, const float p_charge) {
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19 | if (fk>0) { if(VERBOSE) cout<<"<H_HorizontalQuadrupole> ERROR : k1 should be < 0 (" << name << ")!"<<endl; }
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20 | if (fk !=0 ) element_mat = hquadmat(element_length,fk,eloss, p_mass, p_charge);
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21 | else {
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22 | element_mat = driftmat(element_length);
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23 | if(VERBOSE) cout<<"<H_HorizontalQuadrupole> WARNING : k1= 0 ; drift-like quadrupole (" << name << ") !" << endl;
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24 | }
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25 | return ;
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26 | }
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27 |
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28 | H_HorizontalQuadrupole* H_HorizontalQuadrupole::clone() const {
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29 | H_HorizontalQuadrupole* temp_quad = new H_HorizontalQuadrupole(name,fs,fk,element_length);
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30 | temp_quad->setAperture(element_aperture);
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31 | temp_quad->setX(xpos);
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32 | temp_quad->setY(ypos);
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33 | temp_quad->setTX(txpos);
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34 | temp_quad->setTY(typos);
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35 | temp_quad->setBetaX(betax);
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36 | temp_quad->setBetaY(betay);
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37 | return temp_quad;
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38 | }
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