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Universal spatial correlations in random spinor fields

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Abstract:

We identify universal spatial fluctuations in systems with nontrivial spin dynamics. To this end we calculate by exact numerical diagonalization a variety of experimentally relevant correlations between spinor amplitudes, spin polarizations, and spin currents, both in the bulk and near the boundary of a confined two-dimensional clean electron gas in the presence of spin-orbit interaction. We support our claim of universality with the excellent agreement between the numerical results and system-independent spatial correlations of a random field defined on both the spatial and spin degrees of freedom. A rigorous identity relating our universal predictions with response functions provides a direct physical interpretation of our results in the framework of linear response theory.

Tópico:

Quantum and electron transport phenomena

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Citations: 2
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Información de la Fuente:

FuentePhysical Review E
Cuartil año de publicaciónNo disponible
Volumen87
Issue4
Páginas042115 - N/A
pISSNNo disponible
ISSN1539-3755

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