Ultrafast strain engineering in complex oxide heterostructures

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Abstract

We report on ultrafast optical experiments in which femtosecond midinfrared radiation is used to excite the lattice of complex oxide heterostructures. By tuning the excitation energy to a vibrational mode of the substrate, a long-lived five-order-of-magnitude increase of the electrical conductivity of NdNiO 3 epitaxial thin films is observed as a structural distortion propagates across the interface. Vibrational excitation, extended here to a wide class of heterostructures and interfaces, may be conducive to new strategies for electronic phase control at THz repetition rates. © 2012 American Physical Society.

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Caviglia, A. D., Scherwitzl, R., Popovich, P., Hu, W., Bromberger, H., Singla, R., … Cavalleri, A. (2012). Ultrafast strain engineering in complex oxide heterostructures. Physical Review Letters, 108(13). https://doi.org/10.1103/PhysRevLett.108.136801

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