__init__(self, problem, params=dict(), integrator=None, integrator_params=dict()) | pyoculus.solvers.fixed_point.FixedPoint | |
_is_cylindrical_problem | pyoculus.solvers.fixed_point.FixedPoint | protected |
_newton_method_1(self, pp, qq, s_guess, sbegin, send, theta, zeta, dzeta, niter, tol) | pyoculus.solvers.fixed_point.FixedPoint | protected |
_newton_method_2(self, pp, qq, s_guess, sbegin, send, theta_guess, zeta, dzeta, niter, tol) | pyoculus.solvers.fixed_point.FixedPoint | protected |
_newton_method_3(self, pp, qq, R_guess, Rbegin, Rend, Z, zeta, dzeta, niter, tol) | pyoculus.solvers.fixed_point.FixedPoint | protected |
compute(self, guess, pp, qq, sbegin=-1.0, send=1.0, tol=None) | pyoculus.solvers.fixed_point.FixedPoint | |
dzeta | pyoculus.solvers.fixed_point.FixedPoint | |
GreenesResidue | pyoculus.solvers.fixed_point.FixedPoint | |
history | pyoculus.solvers.fixed_point.FixedPoint | |
is_theta_fixed | pyoculus.solvers.fixed_point.FixedPoint | |
is_Z_fixed | pyoculus.solvers.fixed_point.FixedPoint | |
MeanResidue | pyoculus.solvers.fixed_point.FixedPoint | |
Nfp | pyoculus.solvers.fixed_point.FixedPoint | |
niter | pyoculus.solvers.fixed_point.FixedPoint | |
nrestart | pyoculus.solvers.fixed_point.FixedPoint | |
plot(self, plottype=None, xlabel=None, ylabel=None, xlim=None, ylim=None, **kwargs) | pyoculus.solvers.fixed_point.FixedPoint | |
pp | pyoculus.solvers.fixed_point.FixedPoint | |
qq | pyoculus.solvers.fixed_point.FixedPoint | |
s | pyoculus.solvers.fixed_point.FixedPoint | |
successful | pyoculus.solvers.fixed_point.FixedPoint | |
theta | pyoculus.solvers.fixed_point.FixedPoint | |
x | pyoculus.solvers.fixed_point.FixedPoint | |
y | pyoculus.solvers.fixed_point.FixedPoint | |
z | pyoculus.solvers.fixed_point.FixedPoint | |
zeta | pyoculus.solvers.fixed_point.FixedPoint | |