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Universality of Internal Correlations of Strongly Interacting p-Wave Fermions in One-Dimensional Geometry
Przemysław Kościk1, Tomasz Sowiński2
1Department of Computer Sciences, University of Applied Sciences, ulica Mickiewicza 8, PL-33100 Tarnów, Poland.
Abstract:
We consider the many-body ground state of polarized fermions interacting via zero-range p-wave forces in a one-dimensional geometry. We rigorously prove that in the limit of infinite attractions spectral properties of any-order reduced density matrix describing arbitrary subsystem are completely independent of the shape of an external potential. It means that quantum correlations between any two subsystems are in this limit insensitive to the confinement. In addition, we show that the purity of these matrices quantifying the amount of quantum correlations can be obtained analytically for any number of particles without diagonalizing them. This observation may serve as a rigorous benchmark for other models and methods describing strongly interacting p-wave fermions.
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