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Dynamics of the photoinduced insulator-to-metal transition in a nickelate film

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arxiv 1809.10939 v1 pith:2R5EDOAQ submitted 2018-09-28 cond-mat.str-el

Dynamics of the photoinduced insulator-to-metal transition in a nickelate film

classification cond-mat.str-el
keywords dynamicsphotoinduceddeviceselectronicfilminsulator-to-metalnickelatestowards
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The control of materials properties with light is a promising approach towards the realization of faster and smaller electronic devices. With phases that can be controlled via strain, pressure, chemical composition or dimensionality, nickelates are good candidates for the development of a new generation of high performance and low consumption devices. Here we analyze the photoinduced dynamics in a single crystalline NdNiO$_3$ film upon excitation across the electronic gap. Using time-resolved reflectivity and resonant x-ray diffraction, we show that the pump pulse induces an insulator-to-metal transition, accompanied by the melting of the charge order. Finally we compare our results to similar studies in manganites and show that the same model can be used to describe the dynamics in nickelates, hinting towards a unified description of these photoinduced phase transitions.

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