Statistical Potential for Identical Fermions: Emergent Attraction and Pauli Crystal Formation

Abstract

We show that the thermodynamics of N identical fermions maps onto that of distinguishable particles governed by a collective statistical potential -- the microscopic origin of degeneracy pressure. Known to be purely repulsive for N=2, this potential develops attractive contributions for N≥ 3. Its minima coincide with Pauli crystal configurations, providing the energetic origin of these structures. For large N, the dominant force is attractive on inner shells and repulsive on outer ones -- not of two-body origin. The global minimum undergoes discrete melting transitions at specific temperatures.

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