English

Universal and Maximal Entanglement Swapping in General Fermionic Gaussian States

Quantum Physics 2025-12-19 v1 Quantum Gases Statistical Mechanics High Energy Physics - Theory

Abstract

Exploring universal entanglement structure in many-body systems is both fundamental and challenging, particularly when the system undergoes non-unitary operations. In this work, we uncover a universal mechanism for realizing maximal entanglement swapping in fermionic Gaussian states subjected to projective Bell measurements. We consider two initially decoupled, half-filled copies of a free-fermion system in arbitrary dimensions and perform post-selective Bell measurements on half of the corresponding sites across the two copies. Remarkably, the post-measurement state factorizes into a product of Bell pairs, establishing maximal interlayer entanglement entirely independent of the initial Gaussian state. We derive this post-measurement state exactly for general particle-number-conserving fermionic Gaussian states, establishing both the validity and universality of the mechanism, with numerical simulations serving as consistency checks. This phenomenon arises from a robust interplay between fermionic statistics and Gaussianity, revealing a distinct fermionic route to measurement-induced maximal entanglement.

Keywords

Cite

@article{arxiv.2512.15890,
  title  = {Universal and Maximal Entanglement Swapping in General Fermionic Gaussian States},
  author = {Jiyuan Fang and Qicheng Tang and Xueda Wen},
  journal= {arXiv preprint arXiv:2512.15890},
  year   = {2025}
}

Comments

22 pages, 5 figures

R2 v1 2026-07-01T08:30:00.852Z