compute_tau_tilde_jets_trs#

t3toolbox.backend.sampling_derivatives.compute_tau_tilde_jets_trs(left_tt_cores, xi_jets, deta_tildes, mu_jets, trs)#
def compute_tau_tilde_jets_trs(
        left_tt_cores:  typ.Sequence[NDArray],  # P.  len=d, elm_shape=C+(rLi,nUi,rL(i+1))
        xi_jets:        typ.Sequence[NDArray],  # frame input jets, len=d, elm_shape=(2,)+W+C+(nUi,)
        deta_tildes:    typ.Sequence[NDArray],  # adjoint-up jets, len=d, elm_shape=(order+1,)+W+K+C+(nUi,)
        mu_jets:        typ.Sequence[NDArray],  # frame left jets,  len=d, elm_shape=(order+1,)+W+C+(rLi,)
        trs:            NDArray,                # binomial tensor, shape=(order+1,order+1,order+1)
) -> typ.Tuple[NDArray, ...]:                   # tau_tildes. len=d, elm_shape=(order+1,)+W+K+C+(rL(i+1),)

Adjoint-var-rightward edge-variable jets (jet-ified probing.compute_tau_tilde).

Parameters:
  • left_tt_cores (t3toolbox.backend.common.typ.Sequence[NDArray])

  • xi_jets (t3toolbox.backend.common.typ.Sequence[NDArray])

  • deta_tildes (t3toolbox.backend.common.typ.Sequence[NDArray])

  • mu_jets (t3toolbox.backend.common.typ.Sequence[NDArray])

  • trs (NDArray)

Return type:

t3toolbox.backend.common.typ.Tuple[NDArray, Ellipsis]