1988Journal of Physics C Solid State PhysicsOpen access

The effect of high polaron concentration on the polaron transport in NbO2.5-x: optical and electrical properties

Claus H. Rüscher, Ekhard K. H. Salje, Altaf Hussain

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Abstract

The electrical conductivity and optical absorption of NbO 2.5-x (0.005<x<0.08) are described by polaron ground states. Correlated hopping and polaronic absorption of weakly disordered systems are observed in the regime of low carrier concentration (x<0.05). Bipolarons and single polarons are both stable in this regime. At higher carrier concentrations, quasi-metallic conductivity and saturated polaron concentrations are described as being due to the superposition of polaron groundstates and quasi-free electrons. The saturation concentration yields a critical distance of about 10 AA between polarons. The threshold value of x=0.05 is related to the geometrical properties of the NbO 2.5-x structures.

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The electrical conductivity and optical absorption of NbO 2.5-x (0.005<x<0.08) are described by polaron ground states. Correlated hopping and polaronic absorption of weakly disordered systems are observed in the regime of low carrier concentration (x<0.05). Bipolarons and single polarons are both stable in this regime. At higher carrier concentrations, quasi-metallic conductivity and saturated polaron concentrations are described as being due to the superposition of polaron groundstates and quasi-free electrons. The saturation concentration yields a critical distance of about 10 AA between polarons. The threshold value of x=0.05 is related to the geometrical properties of the NbO 2.5-x structures.

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Available abstract

The electrical conductivity and optical absorption of NbO 2.5-x (0.005<x<0.08) are described by polaron ground states. Correlated hopping and polaronic absorption of weakly disordered systems are observed in the regime of low carrier concentration (x<0.05). Bipolarons and single polarons are both stable in this regime. At higher carrier concentrations, quasi-metallic conductivity and saturated polaron concentrations are described as being due to the superposition of polaron groundstates and quasi-free electrons. The saturation concentration yields a critical distance of about 10 AA between polarons. The threshold value of x=0.05 is related to the geometrical properties of the NbO 2.5-x structures.

Key concepts: Polaron, Condensed matter physics, Electrical resistivity and conductivity, Saturation (graph theory), Materials science, Conductivity, Electron, Absorption (acoustics)

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