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ExactDrift.H
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1/* Copyright 2022-2023 The Regents of the University of California, through Lawrence
2 * Berkeley National Laboratory (subject to receipt of any required
3 * approvals from the U.S. Dept. of Energy). All rights reserved.
4 *
5 * This file is part of ImpactX.
6 *
7 * Authors: Chad Mitchell, Axel Huebl
8 * License: BSD-3-Clause-LBNL
9 */
10#ifndef IMPACTX_EXACTDRIFT_H
11#define IMPACTX_EXACTDRIFT_H
12
14#include "mixin/alignment.H"
15#include "mixin/pipeaperture.H"
16#include "mixin/beamoptic.H"
17#include "mixin/thick.H"
19#include "mixin/spintransport.H"
20#include "mixin/named.H"
21#include "mixin/nofinalize.H"
22
23#include <AMReX_Extension.H>
24#include <AMReX_Math.H>
25#include <AMReX_REAL.H>
26#include <AMReX_SIMD.H>
27
28#include <cmath>
29#include <stdexcept>
30
31
32namespace impactx::elements
33{
35 : public mixin::Named,
36 public mixin::BeamOptic<ExactDrift>,
37 public mixin::LinearTransport<ExactDrift>,
38 public mixin::Thick,
39 public mixin::Alignment,
42 public mixin::NoFinalize,
43 public amrex::simd::Vectorized<amrex::simd::native_simd_size_particlereal>
44 {
45 static constexpr auto type = "ExactDrift";
47
63 amrex::ParticleReal rotation_degree = 0,
66 int nslice = 1,
67 std::optional<std::string> name = std::nullopt
68 )
69 : Named(std::move(name)),
70 Thick(ds, nslice),
71 Alignment(dx, dy, rotation_degree),
73 {
74 }
75
77 void reverse () { Thick::reverse(); }
78
80 using BeamOptic::operator();
81
89 void compute_constants (RefPart const & refpart)
90 {
91 using namespace amrex::literals; // for _rt and _prt
93
94 Alignment::compute_constants(refpart);
95
96 // length of the current slice
98
99 // access reference particle values to find beta, 1/(beta*gamma)**2
100 m_ibeta = 1_prt / refpart.beta();
101 m_ibetagam2 = 1_prt / powi<2>(refpart.beta_gamma());
102 }
103
118 template<typename T_Real=amrex::ParticleReal, typename T_IdCpu=uint64_t>
121 T_Real & AMREX_RESTRICT x,
122 T_Real & AMREX_RESTRICT y,
123 T_Real & AMREX_RESTRICT t,
124 T_Real const & AMREX_RESTRICT px,
125 T_Real const & AMREX_RESTRICT py,
126 T_Real const & AMREX_RESTRICT pt,
127 [[maybe_unused]] T_IdCpu const & AMREX_RESTRICT idcpu,
128 [[maybe_unused]] RefPart const & AMREX_RESTRICT refpart
129 ) const
130 {
131 using namespace amrex::literals; // for _rt and _prt
132 using namespace std; // for cmath(float)
133 using amrex::Math::powi;
134
135 // initialize output values
136 T_Real const xout = x;
137 T_Real const yout = y;
138 T_Real const tout = t;
139
140 // initialize output values of momenta
141 // T_Real const pxout = px;
142 // T_Real const pyout = py;
143 // T_Real const ptout = pt;
144
145 // compute the radical in the denominator (= pz):
146 T_Real const inv_pzden = 1_prt / sqrt(
147 powi<2>(pt - m_ibeta) -
149 powi<2>(px) -
150 powi<2>(py)
151 );
152
153 // advance position and momentum (exact drift)
154 x = xout + m_slice_ds * px * inv_pzden;
155 // pxout = px;
156 y = yout + m_slice_ds * py * inv_pzden;
157 // pyout = py;
158 t = tout - m_slice_ds * (m_ibeta + (pt - m_ibeta) * inv_pzden);
159 // ptout = pt;
160
161 // assign updated momenta
162 // px = pxout;
163 // py = pyout;
164 // pt = ptout;
165 }
166
172 void operator() (RefPart & AMREX_RESTRICT refpart) const
173 {
174 using namespace amrex::literals; // for _rt and _prt
175 using amrex::Math::powi;
176
177 // assign input reference particle values
178 amrex::ParticleReal const x = refpart.x;
179 amrex::ParticleReal const px = refpart.px;
180 amrex::ParticleReal const y = refpart.y;
181 amrex::ParticleReal const py = refpart.py;
182 amrex::ParticleReal const z = refpart.z;
183 amrex::ParticleReal const pz = refpart.pz;
184 amrex::ParticleReal const t = refpart.t;
185 amrex::ParticleReal const pt = refpart.pt;
186 amrex::ParticleReal const s = refpart.s;
187
188 // length of the current slice
189 amrex::ParticleReal const slice_ds = m_ds / nslice();
190
191 // assign intermediate parameter
192 amrex::ParticleReal const step = slice_ds /std::sqrt(powi<2>(pt)-1.0_prt);
193
194 // advance position and momentum (drift)
195 refpart.x = x + step*px;
196 refpart.y = y + step*py;
197 refpart.z = z + step*pz;
198 refpart.t = t - step*pt;
199
200 // advance integrated path length
201 refpart.s = s + slice_ds;
202 }
203
204
219 template<typename T_Real=amrex::ParticleReal, typename T_IdCpu=uint64_t>
222 T_Real & AMREX_RESTRICT x,
223 T_Real & AMREX_RESTRICT y,
224 T_Real & AMREX_RESTRICT t,
225 T_Real const & AMREX_RESTRICT px,
226 T_Real const & AMREX_RESTRICT py,
227 T_Real const & AMREX_RESTRICT pt,
228 [[maybe_unused]] T_Real const & AMREX_RESTRICT sx,
229 [[maybe_unused]] T_Real const & AMREX_RESTRICT sy,
230 [[maybe_unused]] T_Real const & AMREX_RESTRICT sz,
231 T_IdCpu const & AMREX_RESTRICT idcpu,
232 RefPart const & AMREX_RESTRICT refpart
233 ) const
234 {
235 // spin is unaffected
236
237 // phase space push
238 (*this)(x, y, t, px, py, pt, idcpu, refpart);
239 }
240
241
243 using LinearTransport::operator();
244
251 Map6x6
252 transport_map (RefPart const & AMREX_RESTRICT refpart) const
253 {
254 using namespace amrex::literals; // for _rt and _prt
255 using amrex::Math::powi;
256
257 // length of the current slice
258 amrex::ParticleReal const slice_ds = m_ds / nslice();
259
260 // access reference particle values to find beta*gamma^2
261 amrex::ParticleReal const pt_ref = refpart.pt;
262 amrex::ParticleReal const betgam2 = powi<2>(pt_ref) - 1_prt;
263
264 // assign linear map matrix elements
266 R(1,2) = slice_ds;
267 R(3,4) = slice_ds;
268 R(5,6) = slice_ds / betgam2;
269
270 // apply the transverse rotation (roll) alignment error
271 return rotate_aligned_map(R);
272 }
273
274 private:
275 // constants that are independent of the individually tracked particle,
276 // see: compute_constants() to refresh
279 };
280
281} // namespace impactx
282
284
285#endif // IMPACTX_EXACTDRIFT_H
#define AMREX_FORCE_INLINE
#define AMREX_RESTRICT
#define AMREX_GPU_HOST_DEVICE
#define AMREX_GPU_HOST
#define IMPACTX_PUSH_EXTERN_TEMPLATE(ElementType)
Definition PushAll.H:78
amrex_particle_real ParticleReal
constexpr T powi(T x) noexcept
__host__ __device__ GpuComplex< T > sqrt(const GpuComplex< T > &a_z) noexcept
Definition All.H:56
@ s
fixed s as the independent variable
Definition ImpactXParticleContainer.H:37
@ t
fixed t as the independent variable
Definition ImpactXParticleContainer.H:38
amrex::SmallMatrix< amrex::ParticleReal, 6, 6, amrex::Order::F, 1 > Map6x6
Definition CovarianceMatrix.H:20
static constexpr __host__ __device__ SmallMatrix< T, NRows, NCols, ORDER, StartIndex > Identity() noexcept
Definition ReferenceParticle.H:33
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal beta_gamma() const
Definition ReferenceParticle.H:167
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal beta() const
Definition ReferenceParticle.H:151
Definition ExactDrift.H:44
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE void spin_and_phasespace_push(T_Real &AMREX_RESTRICT x, T_Real &AMREX_RESTRICT y, T_Real &AMREX_RESTRICT t, T_Real const &AMREX_RESTRICT px, T_Real const &AMREX_RESTRICT py, T_Real const &AMREX_RESTRICT pt, T_Real const &AMREX_RESTRICT sx, T_Real const &AMREX_RESTRICT sy, T_Real const &AMREX_RESTRICT sz, T_IdCpu const &AMREX_RESTRICT idcpu, RefPart const &AMREX_RESTRICT refpart) const
Definition ExactDrift.H:221
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE void operator()(T_Real &AMREX_RESTRICT x, T_Real &AMREX_RESTRICT y, T_Real &AMREX_RESTRICT t, T_Real const &AMREX_RESTRICT px, T_Real const &AMREX_RESTRICT py, T_Real const &AMREX_RESTRICT pt, T_IdCpu const &AMREX_RESTRICT idcpu, RefPart const &AMREX_RESTRICT refpart) const
Definition ExactDrift.H:120
static constexpr auto type
Definition ExactDrift.H:45
AMREX_GPU_HOST AMREX_FORCE_INLINE Map6x6 transport_map(RefPart const &AMREX_RESTRICT refpart) const
Definition ExactDrift.H:252
amrex::ParticleReal m_slice_ds
Definition ExactDrift.H:277
ImpactXParticleContainer::ParticleType PType
Definition ExactDrift.H:46
void compute_constants(RefPart const &refpart)
Definition ExactDrift.H:89
amrex::ParticleReal m_ibetagam2
Definition ExactDrift.H:278
amrex::ParticleReal m_ibeta
m_ds / nslice();
Definition ExactDrift.H:278
void reverse()
Definition ExactDrift.H:77
ExactDrift(amrex::ParticleReal ds, amrex::ParticleReal dx=0, amrex::ParticleReal dy=0, amrex::ParticleReal rotation_degree=0, amrex::ParticleReal aperture_x=0, amrex::ParticleReal aperture_y=0, int nslice=1, std::optional< std::string > name=std::nullopt)
Definition ExactDrift.H:59
Definition alignment.H:29
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal dy() const
Definition alignment.H:189
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal dx() const
Definition alignment.H:179
AMREX_GPU_HOST AMREX_FORCE_INLINE Map6x6 rotate_aligned_map(Map6x6 const &R) const
Definition alignment.H:263
Alignment(amrex::ParticleReal dx, amrex::ParticleReal dy, amrex::ParticleReal rotation_degree)
Definition alignment.H:39
Definition beamoptic.H:529
Definition lineartransport.H:50
Definition named.H:29
AMREX_GPU_HOST Named(std::optional< std::string > name)
Definition named.H:57
AMREX_FORCE_INLINE std::string name() const
Definition named.H:122
Definition nofinalize.H:22
Definition pipeaperture.H:26
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal aperture_x() const
Definition pipeaperture.H:90
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal aperture_y() const
Definition pipeaperture.H:101
PipeAperture(amrex::ParticleReal aperture_x, amrex::ParticleReal aperture_y)
Definition pipeaperture.H:32
Definition spintransport.H:36
Definition thick.H:24
Thick(amrex::ParticleReal ds, int nslice)
Definition thick.H:30
amrex::ParticleReal m_ds
Definition thick.H:68
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE amrex::ParticleReal ds() const
Definition thick.H:53
AMREX_GPU_HOST_DEVICE AMREX_FORCE_INLINE int nslice() const
Definition thick.H:43