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  Normal-ordered k-body approximation in particle-number-breaking theories

Ripoche, J., Tichai, A., & Duguet, T. (2020). Normal-ordered k-body approximation in particle-number-breaking theories. European Physical Journal A, 56(2): 40. doi:10.1140/epja/s10050-020-00045-8.

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Ripoche, J.1, Author
Tichai, A.2, Author           
Duguet, T.1, Author
Affiliations:
1external, ou_persistent22              
2Division Prof. Dr. Klaus Blaum, MPI for Nuclear Physics, Max Planck Society, ou_904548              

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 MPINP: Starke Wechselwirkung und exotische Kerne – Abteilung Blaum
 Abstract: The reach of ab initio many-body theories is rapidly extending over the nuclear chart. However, dealing fully with three-nucleon, possibly four-nucleon, interactions makes the solving of the A-body Schrodinger equation particularly cumbersome, if not impossible beyond a certain nuclear mass. Consequently, ab initio calculations of mid-mass nuclei are typically performed on the basis of the so-called normal-ordered two-body (NO2B) approximation that captures dominant effects of three-nucleon forces while effectively working with two-nucleon operators. A powerful idea currently employed to extend ab initio calculations to open-shell nuclei consists of expanding the exact solution of the A-body Schrodinger equation while authorizing the approximate solution to break symmetries of the Hamiltonian. In this context, operators are normal ordered with respect to a symmetry-breaking reference state such that proceeding to a naive truncation may lead to symmetry-breaking approximate operators. The purpose of the present work is to design a normal-ordering approximation of operators that is consistent with the symmetries of the Hamiltonian while working in the context of symmetry broken (and potentially restored) methods. Focusing on many-body formalisms in which U(1) global-gauge symmetry associated with particle-number conservation is broken (and potentially restored), a particle-number-conserving normal-orderedk-body (PNOkB) approximation of an arbitrary N-body operator is designed on the basis of Bogoliubov reference states. A numerical test based on particle-number-projected Hartree-Fock-Bogoliubov calculations permits to check the particle-number conserving/violating character of a given approximation to a particle-number conserving operator. The PNOkB approximation of an arbitrary N-body operator is formulated. Based on this systematic approach, it is demonstrated that naive extensions of the normal-ordered two-body (NO2B) approximation employed so far on the basis of symmetry-conserving reference states lead to particle non-conserving operators. Alternatively, the PNOkB procedure is now available to generate particle-number-conserving approximate operators. The formal analysis is validated numerically. Using the presently proposed PNOkB approximation, ab initio calculations based on symmetry-breaking and restored formalisms can be safely performed. The future formulation of an angular-momentum-conserving normal-ordered k-body approximation based on deformed Slater determinant or Bogoliubov reference states is envisioned.

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 Dates: 2020-02
 Publication Status: Published online
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 Identifiers: DOI: 10.1140/epja/s10050-020-00045-8
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Title: European Physical Journal A
  Other : Eur. Phys. J. A
Source Genre: Journal
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Publ. Info: Les Ulis, France : EDP Sciences
Pages: - Volume / Issue: 56 (2) Sequence Number: 40 Start / End Page: - Identifier: ISSN: 1434-6001
CoNE: https://pure.mpg.de/cone/journals/resource/954926989130