QEOMResult#
- class QEOMResult[ソース]#
ベースクラス:
EigensolverResult
The results class for the qEOM algorithm.
For more details about the definitions, please refer to https://arxiv.org/abs/1910.12890.
- ground_state_raw_result#
The raw results of the ground state eigensolver.
- Type:
- excitation_energies#
The excitation energies approximated by the qEOM algorithm.
- Type:
np.ndarray
- expansion_coefficients#
The expansion coefficients matrix of the excitation operators onto the set of basis operators spanning the linear qEOM subspace.
- Type:
np.ndarray
- h_matrix#
Matrix representing the Hamiltonian in the qEOM subspace. Because of our choice for the expansion basis, the two square sub-matrices on the diagonal are related by a transposition and the two submatrices on the anti diagonal are hermitian conjugates.
- Type:
np.ndarray
- s_matrix#
Matrix representing the geometry of the qEOM subspace. Because of our choice for the expansion basis, the two square submatrices on the diagonal are related by a transposition (with a sign) and the two submatrices on the anti diagonal are hermitian conjugates.
- Type:
np.ndarray
- h_matrix_std#
2 by 2 matrix representing the sums of standard deviations in the four square submatrices of H.
- Type:
np.ndarray
- s_matrix_std#
2 by 2 matrix representing the sums of standard deviations in the four square submatrices of S.
- Type:
np.ndarray
- transition_amplitudes#
Transition amplitudes of the auxiliary operators computed following the evaluation rules specified when the qEOM class was created.
Attributes
- aux_operators_evaluated#
Return the aux operator expectation values.
These values are in fact tuples formatted as (mean, metadata).
- m_matrix#
returns the M matrix
- m_matrix_std#
returns the M matrix standard deviation
- q_matrix#
returns the Q matrix
- q_matrix_std#
returns the Q matrix standard deviation
- v_matrix#
returns the V matrix
- v_matrix_std#
returns the V matrix standard deviation
- w_matrix#
returns the W matrix
- w_matrix_std#
returns the W matrix standard deviation
Methods