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Critical slowing of the spin and charge density wave order in thin film Cr following photoexcitation

Posted on 2024-06-06 - 11:52
We report on the evolution of the charge density wave (CDW) and spin density wave (SDW) order of a chromium film following photoexcitation with an ultrafast optical laser pulse. The CDW is measured by ultrafast time-resolved x-ray diffraction of the CDW satellite that tracks the suppression and recovery of the CDW following photoexcitation. We find that as the temperature of the film approaches a discontinuous phase transition in the CDW and SDW order, the time scales of recovery increase exponentially from the expected thermal time scales. We extend a Landau model for SDW systems to account for this critical slowing with the appropriate boundary conditions imposed by the geometry of the thin film system. This model allows us to assess the energy barrier between available CDW/SDW states with different spatial periodicities.

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AUTHORS (14)

  • Andrej Singer
    James Wingert
    Matthieu Chollet
    Rajasekhar Medapalli
    Diling Zhu
    Oleg Shpyrko
    Stjepan Hrkac
    Anatoly Shabalin
    Sheena Patel
    James M. Glownia
    Oleg Gorobtsov
    Devin Cela
    Eric Fullerton
    Nelson Hua
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