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251 lines
10 KiB
ReStructuredText
251 lines
10 KiB
ReStructuredText
CID
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====
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This is a test directory which builds a CID by setting the follwoing rules:
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* The only generator determinant is the Hartee-Fock (single-reference method)
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* All generated determinants are included in the wave function (no perturbative
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selection)
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These rules are set in the ``H_apply.irp.f`` file.
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Needed Modules
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==============
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.. Do not edit this section. It was auto-generated from the
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.. by the `update_README.py` script.
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.. image:: tree_dependency.png
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* `Selectors_full <http://github.com/LCPQ/quantum_package/tree/master/src/Selectors_full>`_
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* `SingleRefMethod <http://github.com/LCPQ/quantum_package/tree/master/src/SingleRefMethod>`_
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Documentation
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=============
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.. Do not edit this section. It was auto-generated from the
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.. by the `update_README.py` script.
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`cid <http://github.com/LCPQ/quantum_package/tree/master/src/CID/cid_lapack.irp.f#L1>`_
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Undocumented
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`h_apply_cid <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_8#L408>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cid_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_8#L1>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cid_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_8#L264>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f#L13>`_
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Undocumented
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`h_apply_cisd_selection_delta_rho_one_point <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L1287>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_delta_rho_one_point_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L767>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_delta_rho_one_point_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L1091>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_dipole_moment_z <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L6649>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_dipole_moment_z_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L6129>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_dipole_moment_z_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L6453>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L5117>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_epstein_nesbet_2x2 <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L5883>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_epstein_nesbet_2x2_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L5363>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_2x2_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L5687>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L4597>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L4921>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_sc2 <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L4351>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_epstein_nesbet_sc2_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L3831>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_sc2_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L4155>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_sc2_no_projected <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L3585>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_epstein_nesbet_sc2_no_projected_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L3065>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_sc2_no_projected_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L3389>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_sc2_projected <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L2819>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_epstein_nesbet_sc2_projected_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L2299>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_epstein_nesbet_sc2_projected_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L2623>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_h_core <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L2053>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_h_core_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L1533>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_h_core_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L1857>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_moller_plesset <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L521>`_
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_cisd_selection_moller_plesset_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L1>`_
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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`h_apply_cisd_selection_moller_plesset_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/CID/H_apply.irp.f_shell_10#L325>`_
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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Needed Modules
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==============
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.. Do not edit this section It was auto-generated
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.. by the `update_README.py` script.
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.. image:: tree_dependency.png
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* `Selectors_full <http://github.com/LCPQ/quantum_package/tree/master/plugins/Selectors_full>`_
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* `SingleRefMethod <http://github.com/LCPQ/quantum_package/tree/master/plugins/SingleRefMethod>`_
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Documentation
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=============
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.. Do not edit this section It was auto-generated
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.. by the `update_README.py` script.
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`cid <http://github.com/LCPQ/quantum_package/tree/master/plugins/CID/cid_lapack.irp.f#L1>`_
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Undocumented
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h_apply_cid
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Calls H_apply on the HF determinant and selects all connected single and double
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excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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h_apply_cid_diexc
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Undocumented
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h_apply_cid_diexcorg
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Generate all double excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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h_apply_cid_diexcp
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Undocumented
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h_apply_cid_monoexc
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Generate all single excitations of key_in using the bit masks of holes and
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particles.
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Assume N_int is already provided.
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