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

Series
Oxford Physics Academic Lectures
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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.
We develop an operationally meaningful measure which allows one to quantify the potential physical relevance of those generalized Pauli constraints beyond the well-established relevance of Pauli’s exclusion principle. It is based on a geometric hierarchy induced by Pauli exclusion principle constraints. The significance of that measure is illustrated for a few-fermion model which also confirms such nontrivial relevance of the generalized Pauli constraints.

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Journey of a Molecular Detective; David Sherratt

Pinning of Fermionic Occupation Numbers

The Pauli exclusion principle is a constraint on the natural occupation numbers of fermionic states.
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Journey of a Molecular Detective; David Sherratt

Quasipinning and Extended Hartree-Fock Method based on Generalized Pauli Constraints

It is now known that fermionic natural occupation numbers (NON) do not only obey Pauli’s exclusion principle but are even stronger restricted by the so-called generalized Pauli constraints (GPC).
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Episode Information

Series
Oxford Physics Academic Lectures
People
Felix Tennie
Keywords
quantum
fermionic
symmetry
Department: Department of Physics
Date Added: 11/10/2016
Duration: 00:59:47

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