64 int nzm1 =
mp.get_mg()->get_nzone() - 1 ;
77 if (fabs(
mp.get_rot_phi()) < 1e-10) {
86 bsn.
set(2) = - omega * (
xa - x_axe) ;
Active physical coordinates and mapping derivatives.
virtual const Sym_tensor & cov() const
Read-only access to the covariant representation.
Tensor field of valence 0 (or component of a tensorial field).
virtual void std_spectral_base()
Sets the spectral bases of the Valeur va to the standard ones for a scalar field.
Scalar pot_centri
Centrifugal potential.
void kinematics(double omega, double x_axe)
Computes the quantities bsn and pot_centri.
Vector bsn
3-vector shift, divided by N, of the rotating coordinates, .
virtual void del_deriv() const
Deletes all the derived quantities.
Scalar nn
Lapse function N .
Map & mp
Mapping associated with the star.
Class intended to describe valence-2 symmetric tensors.
virtual void std_spectral_base()
Sets the standard spectal bases of decomposition for each component.
virtual void change_triad(const Base_vect &)
Sets a new vectorial basis (triad) of decomposition and modifies the components accordingly.
Scalar & set(int)
Read/write access to a component.
Cmp sqrt(const Cmp &)
Square root.
Cmp log(const Cmp &)
Neperian logarithm.
virtual void change_triad(const Base_vect &new_triad)
Sets a new vectorial basis (triad) of decomposition and modifies the components accordingly.
void annule_domain(int l)
Sets the Tensor to zero in a given domain.
Tenseur contract(const Tenseur &, int id1, int id2)
Self contraction of two indices of a Tenseur .
Coord xa
Absolute x coordinate.
Coord ya
Absolute y coordinate.