4.8 Article

Nonequilibrium Quantum Dynamics of a Charge Carrier Doped into a Mott Insulator

期刊

PHYSICAL REVIEW LETTERS
卷 106, 期 19, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.106.196401

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  1. Slovenian Research Agency (ARRS) [P1-0044]
  2. JAEA, Japan
  3. MNiSW [N202 052940]

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We study real-time dynamics of a charge carrier introduced into an undoped Mott insulator propagating under a constant electric field F on the t-J ladder and a square lattice. We calculate the quasistationary current. In both systems an adiabatic regime is observed followed by a positive differential resistivity (PDR) at moderate fields where the carrier mobility is determined. Quantitative differences between the ladder and two-dimensional (2D) systems emerge when at large fields both systems enter the negative differential resistivity (NDR) regime. In the ladder system Bloch-like oscillations prevail, while in two dimensions the current remains finite, proportional to 1/F. The crossover between the PDR and NDR in two dimensions is accompanied by a change of the spatial structure of the propagating spin polaron.

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