Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - Physical Review C, 2017 - APS
Projection of many-body states with good angular momentum from an initial state is usually
accomplished by a three-dimensional integral. We show how projection can instead be …

Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - Physical Review C, 2017 - inis.iaea.org
[en] Projection of many-body states with good angular momentum from an initial state is
usually accomplished by a three-dimensional integral. Here, we show how projection can …

Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - arXiv preprint arXiv:1709.04028, 2017 - arxiv.org
Projection of many-body states with good angular momentum from an initial state is usually
accomplished by a three-dimensional integral. We show how projection can instead be …

Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - Physical Review C, 2017 - ui.adsabs.harvard.edu
Projection of many-body states with good angular momentum from an initial state is usually
accomplished by a three-dimensional integral. We show how projection can instead be …

[PDF][PDF] Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - Phys Rev C - scholar.archive.org
Projection of many-body states with good angular momentum from an initial state is usually
accomplished by a three-dimensional integral. We show how projection can instead be …

Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - Physical Review C, 2017 - osti.gov
Projection of many-body states with good angular momentum from an initial state is usually
accomplished by a three-dimensional integral. Here, we show how projection can instead …

Projection of angular momentum via linear algebra

CW Johnson, KD O'Mara - Phys. Rev. C, 2017 - inspirehep.net
Projection of many-body states with good angular momentum from an initial state is usually
accomplished by a three-dimensional integral. We show how projection can instead be …