English

Many-body entanglement in fermion systems

Quantum Physics 2021-05-24 v2

Abstract

We introduce a general bipartite-like representation and Schmidt decomposition of an arbitrary pure state of NN indistinguishable fermions, based on states of M<NM<N and (NM)(N-M) fermions. It is directly connected with the reduced MM- and (NM)(N-M)-body density matrices (DMs), which have the same spectrum in such states. The concept of MM-body entanglement emerges naturally in this scenario, generalizing that of one-body entanglement. Rigorous majorization relations satisfied by the normalized MM-body DM are then derived, which imply that the associated entropy will not increase, on average, under a class of operations which have these DMs as post-measurement states. Moreover, such entropy is an upper bound to the average bipartite entanglement entropy generated by a class of operations which map the original state to a bipartite state of MM and NMN-M effectively distinguishable fermions. Analytic evaluation of the spectrum of MM-body DMs in some strongly correlated fermionic states is also provided.

Keywords

Cite

@article{arxiv.2012.13785,
  title  = {Many-body entanglement in fermion systems},
  author = {N. Gigena and M. Di Tullio and R. Rossignoli},
  journal= {arXiv preprint arXiv:2012.13785},
  year   = {2021}
}

Comments

13 pages, 1 figure, final version

R2 v1 2026-06-23T21:26:25.640Z