OPAL (Object Oriented Parallel Accelerator Library) 2022.1
OPAL
Septum.cpp
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1//
2// Class Septum
3// Interface for a septum magnet
4//
5// Copyright (c) 2016-2020, Paul Scherrer Institut, Villigen PSI, Switzerland
6// All rights reserved
7//
8// This file is part of OPAL.
9//
10// OPAL is free software: you can redistribute it and/or modify
11// it under the terms of the GNU General Public License as published by
12// the Free Software Foundation, either version 3 of the License, or
13// (at your option) any later version.
14//
15// You should have received a copy of the GNU General Public License
16// along with OPAL. If not, see <https://www.gnu.org/licenses/>.
17//
18#include "AbsBeamline/Septum.h"
19
22#include "Physics/Physics.h"
24
25extern Inform *gmsg;
26
28{}
29
30Septum::Septum(const std::string &name):
32 width_m(0.0) {
33}
34
35Septum::Septum(const Septum &right):
36 PluginElement(right),
37 width_m(right.width_m) {
39}
40
42
43void Septum::accept(BeamlineVisitor &visitor) const {
44 visitor.visitSeptum(*this);
45}
46
47void Septum::initialise(PartBunchBase<double, 3> *bunch, double &startField, double &endField) {
48 endField = startField + 0.005;
49 startField -= 0.005;
50 initialise(bunch);
51}
52
54 *gmsg << "Septum initialise" << endl;
55}
56
57double Septum::getWidth() const {
58 return width_m;
59}
60
61void Septum::setWidth(double width) {
62 width_m = width;
64}
65
67 Vector_t rmin;
68 Vector_t rmax;
69 bunch->get_bounds(rmin, rmax);
70 // interested in absolute maximum
71 double xmax = std::max(std::abs(rmin(0)), std::abs(rmax(0)));
72 double ymax = std::max(std::abs(rmin(1)), std::abs(rmax(1)));
73 double rbunch_max = std::hypot(xmax, ymax);
74
75 if (rbunch_max > rstart_m - 0.1) {
76 return true;
77 }
78 return false;
79}
80
81bool Septum::doCheck(PartBunchBase<double, 3> *bunch, const int turnnumber, const double t, const double /*tstep*/) {
82
83 bool flag = false;
84 const double slope = (yend_m - ystart_m) / (xend_m - xstart_m);
85 const double halfLength = width_m / 2.0 * std::hypot(slope, 1);
86 const double intcept = ystart_m - slope * xstart_m;
87 const double intcept1 = intcept - halfLength;
88 const double intcept2 = intcept + halfLength;
89
90 for (unsigned int i = 0; i < bunch->getLocalNum(); ++i) {
91 const Vector_t& R = bunch->R[i];
92
93 double line1 = std::abs(slope * R(0) + intcept1);
94 double line2 = std::abs(slope * R(0) + intcept2);
95
96 if (std::abs(R(1)) > line2 &&
97 std::abs(R(1)) < line1 &&
98 R(0) > xstart_m &&
99 R(0) < xend_m &&
100 R(1) > ystart_m &&
101 R(1) < yend_m) {
102
103 lossDs_m->addParticle(OpalParticle(bunch->ID[i],
104 R, bunch->P[i],
105 t, bunch->Q[i], bunch->M[i]),
106 std::make_pair(turnnumber, bunch->bunchNum[i]));
107 bunch->Bin[i] = -1;
108 flag = true;
109 }
110 }
111 return flag;
112}
113
115 return ElementType::SEPTUM;
116}
Inform * gmsg
Definition: Main.cpp:61
ElementType
Definition: ElementBase.h:88
T::PETE_Expr_t::PETE_Return_t max(const PETE_Expr< T > &expr, NDIndex< D > &loc)
Definition: ReductionLoc.h:84
PETE_TUTree< FnAbs, typename T::PETE_Expr_t > abs(const PETE_Expr< T > &l)
Inform & endl(Inform &inf)
Definition: Inform.cpp:42
const std::string name
ParticlePos_t & R
ParticleAttrib< int > Bin
void get_bounds(Vector_t &rmin, Vector_t &rmax) const
size_t getLocalNum() const
ParticleAttrib< double > M
ParticleAttrib< Vector_t > P
ParticleAttrib< double > Q
ParticleAttrib< short > bunchNum
ParticleIndex_t & ID
virtual void visitSeptum(const Septum &)=0
Apply the algorithm to a septum magnet.
void setGeom(const double dist)
Sets geometry geom_m with element width dist.
double xstart_m
input geometry positions
std::unique_ptr< LossDataSink > lossDs_m
Pointer to Loss instance.
Definition: Septum.h:23
virtual bool doCheck(PartBunchBase< double, 3 > *bunch, const int turnnumber, const double t, const double tstep) override
Record hits when bunch particles pass.
Definition: Septum.cpp:81
virtual ~Septum()
Definition: Septum.cpp:41
virtual void initialise(PartBunchBase< double, 3 > *bunch, double &startField, double &endField) override
Pure virtual implementation of Component.
Definition: Septum.cpp:47
virtual bool doPreCheck(PartBunchBase< double, 3 > *) override
Virtual hook for preCheck.
Definition: Septum.cpp:66
virtual ElementType getType() const override
Override implementation of PluginElement.
Definition: Septum.cpp:114
double width_m
input geometry positions
Definition: Septum.h:57
void setWidth(double width)
Member variable access.
Definition: Septum.cpp:61
virtual void accept(BeamlineVisitor &) const override
Apply visitor to Septum.
Definition: Septum.cpp:43
Septum()
Definition: Septum.cpp:27
virtual void doInitialise(PartBunchBase< double, 3 > *bunch) override
Hook for initialise.
Definition: Septum.cpp:53
double getWidth() const
Definition: Septum.cpp:57
Definition: Inform.h:42