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Pinning of Fermionic Occupation Numbers

Series
Oxford Physics Academic Lectures
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The Pauli exclusion principle is a constraint on the natural occupation numbers of fermionic states.
It has been suspected since at least the 1970’s, and only proved very recently, that there is a multitude of further constraints on these numbers, generalizing the Pauli principle. Here, we provide the first analytic analysis of the physical relevance of these constraints. We compute the natural occupation numbers for the ground states of a family of interacting fermions in a harmonic potential. Intriguingly, we find that the occupation numbers are almost, but not exactly, pinned to the boundary of the allowed region (quasi-pinned). The result suggests that the physics behind the phenomenon is richer than previously appreciated. In particular, it shows that for some models, the generalized Pauli constraints play a role for the ground state, even though they do not limit the ground-state energy. Our findings suggest a generalization of the Hartree-Fock approximation.

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Fermionic Exchange Symmetry: Quantifying its Influence beyond Pauli’s Exclusion Principle

The Pauli exclusion principle has a strong impact on the properties and the behavior of most fermionic quantum systems. Remarkably, even stronger restrictions on fermionic natural occupation numbers follow from the fermionic exchange symmetry.
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Episode Information

Series
Oxford Physics Academic Lectures
People
Matthias Christandl
Keywords
fermionic
pauli exclusion
Department: Department of Physics
Date Added: 11/10/2016
Duration: 00:55:57

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