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Glass-like recovery of antiferromagnetic spin ordering in a photo-excited manganite Pr?.?Ca?.?MnO?.


ABSTRACT: Electronic orderings of charges, orbitals and spins are observed in many strongly correlated electron materials, and revealing their dynamics is a critical step toward undertsanding the underlying physics of important emergent phenomena. Here we use time-resolved resonant soft x-ray scattering spectroscopy to probe the dynamics of antiferromagnetic spin ordering in the manganite Pr?.?Ca?.?MnO? following ultrafast photo-exitation. Our studies reveal a glass-like recovery of the spin ordering and a crossover in the dimensionality of the restoring interaction from quasi-1D at low pump fluence to 3D at high pump fluence. This behavior arises from the metastable state created by photo-excitation, a state characterized by spin disordered metallic droplets within the larger charge- and spin-ordered insulating domains. Comparison with time-resolved resistivity measurements suggests that the collapse of spin ordering is correlated with the insulator-to-metal transition, but the recovery of the insulating phase does not depend on the re-establishment of the spin ordering.

SUBMITTER: Zhou SY 

PROVIDER: S-EPMC3923209 | biostudies-literature | 2014 Feb

REPOSITORIES: biostudies-literature

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Glass-like recovery of antiferromagnetic spin ordering in a photo-excited manganite Pr₀.₇Ca₀.₃MnO₃.

Zhou S Y SY   Langner M C MC   Zhu Y Y   Chuang Y-D YD   Rini M M   Glover T E TE   Hertlein M P MP   Gonzalez A G Cruz AG   Tahir N N   Tomioka Y Y   Tokura Y Y   Hussain Z Z   Schoenlein R W RW  

Scientific reports 20140213


Electronic orderings of charges, orbitals and spins are observed in many strongly correlated electron materials, and revealing their dynamics is a critical step toward undertsanding the underlying physics of important emergent phenomena. Here we use time-resolved resonant soft x-ray scattering spectroscopy to probe the dynamics of antiferromagnetic spin ordering in the manganite Pr₀.₇Ca₀.₃MnO₃ following ultrafast photo-exitation. Our studies reveal a glass-like recovery of the spin ordering and  ...[more]

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