Effects of spin dynamics on photocarrier relaxation in multiferroic Eu<sub>0.75</sub>Y<sub>0.25</sub>MnO<sub>3</sub> revealed by optical pump-THz probe spectroscopy

ORAL

Abstract

Understanding and control of the antiferromagnetic order in multiferroic materials on an ultrafast time scales is a longstanding area of interest, due to its potential applications in magnetic data storage and ultrafast magnetoelectric switching. We present an optical pump-THz probe study of spin and photocarrier dynamics in multiferroic Eu0.75Y0.25MnO3. We found a localized spin excitation, triggered by the ultrafast switching of superexchange interactions on Mn2+ and Mn4+ sites, that decayed within tens of picoseconds with strong temperature dependence. More interestingly, an acceleration of electron-hole recombination developed below the Neel temperature (47 K). This is likely due to enhanced recombination in the A-type AFM state, when the electron spins are aligned in the same plane, without hopping along c axis.  Additionally, after 1.5 eV excitation of d-d transitions, we did not observe any obvious changes in the electromagnon modes. Overall, the observed fundamental optomagnetic processes can shed light on ultrafast control of magnetism in multiferroics and photoinduced phase transitions.

*Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, NM 87545, USA

Presenters

  • Yue Huang

    • Los Alamos National Lab

Authors

  • Yue Huang

    • Los Alamos National Lab