ARTEMIS
UpdateMomentumHigueraCary.H
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1 /* Copyright 2019 Yinjian Zhao
2  *
3  * This file is part of WarpX.
4  *
5  * License: BSD-3-Clause-LBNL
6  */
7 #ifndef WARPX_PARTICLES_PUSHER_UPDATEMOMENTUM_HIGUERACARY_H_
8 #define WARPX_PARTICLES_PUSHER_UPDATEMOMENTUM_HIGUERACARY_H_
9 
10 #include "Utils/WarpXConst.H"
11 
12 #include <AMReX_FArrayBox.H>
13 #include <AMReX_REAL.H>
14 
15 
23  amrex::ParticleReal& ux, amrex::ParticleReal& uy, amrex::ParticleReal& uz,
24  const amrex::ParticleReal Ex, const amrex::ParticleReal Ey, const amrex::ParticleReal Ez,
25  const amrex::ParticleReal Bx, const amrex::ParticleReal By, const amrex::ParticleReal Bz,
26  const amrex::ParticleReal q, const amrex::ParticleReal m, const amrex::Real dt )
27 {
28  using namespace amrex::literals;
29 
30  // Constants
31  const amrex::ParticleReal qmt = 0.5_prt*q*dt/m;
32  constexpr amrex::ParticleReal invclight = 1._prt/PhysConst::c;
33  constexpr amrex::ParticleReal invclightsq = 1._prt/(PhysConst::c*PhysConst::c);
34  // Compute u_minus
35  const amrex::ParticleReal umx = ux + qmt*Ex;
36  const amrex::ParticleReal umy = uy + qmt*Ey;
37  const amrex::ParticleReal umz = uz + qmt*Ez;
38  // Compute gamma squared of u_minus
39  amrex::ParticleReal gamma = 1._prt + (umx*umx + umy*umy + umz*umz)*invclightsq;
40  // Compute beta and betam squared
41  const amrex::ParticleReal betax = qmt*Bx;
42  const amrex::ParticleReal betay = qmt*By;
43  const amrex::ParticleReal betaz = qmt*Bz;
44  const amrex::ParticleReal betam = betax*betax + betay*betay + betaz*betaz;
45  // Compute sigma
46  const amrex::ParticleReal sigma = gamma - betam;
47  // Get u*
48  const amrex::ParticleReal ust = (umx*betax + umy*betay + umz*betaz)*invclight;
49  // Get new gamma inversed
50  gamma = 1._prt/std::sqrt(0.5_prt*(sigma + std::sqrt(sigma*sigma + 4._prt*(betam + ust*ust)) ));
51  // Compute t
52  const amrex::ParticleReal tx = gamma*betax;
53  const amrex::ParticleReal ty = gamma*betay;
54  const amrex::ParticleReal tz = gamma*betaz;
55  // Compute s
56  const amrex::ParticleReal s = 1._prt/(1._prt+(tx*tx + ty*ty + tz*tz));
57  // Compute um dot t
58  const amrex::ParticleReal umt = umx*tx + umy*ty + umz*tz;
59  // Compute u_plus
60  const amrex::ParticleReal upx = s*( umx + umt*tx + umy*tz - umz*ty );
61  const amrex::ParticleReal upy = s*( umy + umt*ty + umz*tx - umx*tz );
62  const amrex::ParticleReal upz = s*( umz + umt*tz + umx*ty - umy*tx );
63  // Get new u
64  ux = upx + qmt*Ex + upy*tz - upz*ty;
65  uy = upy + qmt*Ey + upz*tx - upx*tz;
66  uz = upz + qmt*Ez + upx*ty - upy*tx;
67 }
68 
69 #endif // WARPX_PARTICLES_PUSHER_UPDATEMOMENTUM_HIGUERACARY_H_
#define AMREX_INLINE
#define AMREX_GPU_HOST_DEVICE
AMREX_GPU_HOST_DEVICE AMREX_INLINE void UpdateMomentumHigueraCary(amrex::ParticleReal &ux, amrex::ParticleReal &uy, amrex::ParticleReal &uz, const amrex::ParticleReal Ex, const amrex::ParticleReal Ey, const amrex::ParticleReal Ez, const amrex::ParticleReal Bx, const amrex::ParticleReal By, const amrex::ParticleReal Bz, const amrex::ParticleReal q, const amrex::ParticleReal m, const amrex::Real dt)
Push the particle's positions over one timestep, given the value of its momenta ux,...
Definition: UpdateMomentumHigueraCary.H:22
static constexpr auto c
vacuum speed of light [m/s]
Definition: constant.H:44
s
Definition: plot_results.py:104
int gamma
Definition: stencil.py:446
int dt
Definition: stencil.py:440