Bose-Fermi N -polaron state emergence from correlation-mediated blocking of phase separation

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Abstract

We study N fermionic impurities in a one-dimensional lattice bosonic bath at unit filling. Using DMRG and mixed boundary conditions - periodic for bosons, open for fermions - we find an N-polaron ground state replacing phase separation at high interspecies repulsion. This tightly bound state of clustered particles emerges due to strong impurity-bath correlations, which induce large impurity-impurity correlations that we quantify via the von Neumann entropy and bipartite mutual information, respectively. This system also reveals a fermionic self-localization effect from a Mott insulator background due to local correlations between the impurities and the bath. The growth of long-range correlations breaks this Mott phase, resulting in the transition to impurity clusters delocalized along the system. Finally, we show that there is a critical impurity number, which depends on intraspecies bosonic interaction, beyond which phase separation is recovered.

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Gómez-Lozada, F., Hiyane, H., Busch, T., & Fogarty, T. (2025). Bose-Fermi N -polaron state emergence from correlation-mediated blocking of phase separation. Physical Review Research, 7(2). https://doi.org/10.1103/PhysRevResearch.7.023053

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