Natural orbitals for many-body expansion methods

J Hoppe, A Tichai, M Heinz, K Hebeler, A Schwenk - Physical Review C, 2021 - APS
The nuclear many-body problem for medium-mass systems is commonly addressed using
wave-function expansion methods that build upon a second-quantized representation of …

Natural orbitals for many-body expansion methods

J Hoppe, A Tichai, M Heinz, K Hebeler… - Physical Review …, 2021 - ui.adsabs.harvard.edu
The nuclear many-body problem for medium-mass systems is commonly addressed using
wave-function expansion methods that build upon a second-quantized representation of …

[PDF][PDF] Natural orbitals for many-body expansion methods

J Hoppe, A Tichai, M Heinz, K Hebeler… - Physical Review C, 2021 - pure.mpg.de
The nuclear many-body problem for medium-mass systems is commonly addressed using
wave-function expansion methods that build upon a second-quantized representation of …

Natural orbitals for many-body expansion methods

J Hoppe, A Tichai, M Heinz, K Hebeler, A Schwenk - Phys. Rev. C, 2021 - inspirehep.net
The nuclear many-body problem for medium-mass systems is commonly addressed using
wave-function expansion methods that build upon a second-quantized representation of …

Natural orbitals for many-body expansion methods

J Hoppe, A Tichai, M Heinz, K Hebeler… - arXiv preprint arXiv …, 2020 - arxiv.org
The nuclear many-body problem for medium-mass systems is commonly addressed using
wave-function expansion methods that build upon a second-quantized representation of …

[PDF][PDF] Natural orbitals for many-body expansion methods

J Hoppe, A Tichai, M Heinz, K Hebeler, A Schwenk - pure.mpg.de
The nuclear many-body problem for medium-mass systems is commonly addressed using
wave-function expansion methods that build upon a second-quantized representation of …