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quantum_package/plugins/DDCI_selected/README.rst

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====================
DDCI_selected Module
====================
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Documentation
=============
.. 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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`ddci <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/ddci.irp.f#L1>`_
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Undocumented
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`h_apply_ddci_pt2 <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/H_apply.irp.f_shell_15#L1271>`_
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Calls H_apply on the HF determinant and selects all connected single and double
excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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`h_apply_ddci_pt2_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/H_apply.irp.f_shell_15#L776>`_
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Generate all double excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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`h_apply_ddci_pt2_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/H_apply.irp.f_shell_15#L1086>`_
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Generate all single excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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`h_apply_ddci_selection <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/H_apply.irp.f_shell_15#L530>`_
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Calls H_apply on the HF determinant and selects all connected single and double
excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
`h_apply_ddci_selection_diexc <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/H_apply.irp.f_shell_15#L1>`_
Generate all double excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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`h_apply_ddci_selection_monoexc <http://github.com/LCPQ/quantum_package/tree/master/src/DDCI_selected/H_apply.irp.f_shell_15#L331>`_
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Generate all single excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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Needed Modules
==============
.. 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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* `Perturbation <http://github.com/LCPQ/quantum_package/tree/master/src/Perturbation>`_
* `Selectors_full <http://github.com/LCPQ/quantum_package/tree/master/src/Selectors_full>`_
* `Generators_CAS <http://github.com/LCPQ/quantum_package/tree/master/src/Generators_CAS>`_
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Needed Modules
==============
.. Do not edit this section It was auto-generated
.. by the `update_README.py` script.
.. image:: tree_dependency.png
* `Perturbation <http://github.com/LCPQ/quantum_package/tree/master/plugins/Perturbation>`_
* `Selectors_full <http://github.com/LCPQ/quantum_package/tree/master/plugins/Selectors_full>`_
* `Generators_CAS <http://github.com/LCPQ/quantum_package/tree/master/plugins/Generators_CAS>`_
Documentation
=============
.. Do not edit this section It was auto-generated
.. by the `update_README.py` script.
`ddci <http://github.com/LCPQ/quantum_package/tree/master/plugins/DDCI_selected/ddci.irp.f#L1>`_
Undocumented
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h_apply_ddci_pt2
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Calls H_apply on the HF determinant and selects all connected single and double
excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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h_apply_ddci_pt2_diexc
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Undocumented
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h_apply_ddci_pt2_diexcorg
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Generate all double excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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h_apply_ddci_pt2_diexcp
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Undocumented
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h_apply_ddci_pt2_monoexc
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Generate all single excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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h_apply_ddci_selection
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Calls H_apply on the HF determinant and selects all connected single and double
excitations (of the same symmetry). Auto-generated by the ``generate_h_apply`` script.
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h_apply_ddci_selection_diexc
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Undocumented
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h_apply_ddci_selection_diexcorg
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Generate all double excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.
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h_apply_ddci_selection_diexcp
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Undocumented
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h_apply_ddci_selection_monoexc
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Generate all single excitations of key_in using the bit masks of holes and
particles.
Assume N_int is already provided.