Observation of spin-charge separation and boundary bound states via the local density of states

Publication date

2017-05-03

Authors

Schoenauer, BenediktISNI 000000052776733X
Schmitteckert, Peter
Schuricht, DirkISNI 0000000419568990

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Abstract

We numerically calculate the local density of states (LDOS) of a one-dimensional Mott insulator with open boundaries, which is modelled microscopically by a (extended) Hubbard chain at half filling. In the Fourier transform of the LDOS we identify several dispersing features corresponding to propagating charge and spin degrees of freedom, thus providing a visualisation of the spin-charge separation in the system. We also consider the effect of an additional boundary potential, which, if sufficiently strong, leads to the formation of a boundary bound state which is clearly visible in the LDOS as a non-dispersing feature inside the Mott gap.

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Schoenauer, B, Schmitteckert, P & Schuricht, D 2017, 'Observation of spin-charge separation and boundary bound states via the local density of states', Physical Review B - Condensed Matter and Materials Physics, vol. 95, no. 20, 205103. https://doi.org/10.1103/PhysRevB.95.205103