AI Article Synopsis

  • NdPdSi is a unique compound in the RPdSi series, exhibiting ferromagnetic order and a higher magnetic ordering temperature than expected for Nd-based systems.
  • The study utilized high resolution photoemission spectroscopy and band structure calculations to analyze the electronic structure, showing strong Pd-Nd hybridization with Nd-Si states near the Fermi level potentially driving the ferromagnetism.
  • Nd's core level spectrum revealed multiple features linked to electron correlations and collective excitations, underscoring the hybridization between Nd's 4 states and conduction electrons, highlighting the compound's unusual characteristics.

Article Abstract

In the series RPdSi, NdPdSiis an anomalous compound in the sense that it exhibits ferromagnetic order unlike other members in this family. The magnetic ordering temperature is also unusually high compared to the expected value for a Nd-based system, assuming 4localization. Here, we have studied the electronic structure of single crystalline NdPdSiemploying high resolution photoemission spectroscopy andband structure calculations. Theoretical results obtained for the effective on-site Coulomb energy of 6 eV corroborate well with the experimental valence band spectra. While there is significant Pd 4-Nd 4hybridization, the states near the Fermi level are found to be dominated by hybridized Nd 4-Si 3states, which is possibly responsible for the ferromagnetism in Nd compound. Nd 3core level spectrum exhibits multiple features manifesting strong final state effects due to electron correlation, charge transfer and collective excitations. These results serve as one of the rare demonstrations of hybridization of Nd 4states with the conduction electrons possibly responsible for the exoticity of this compound.

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Source
http://dx.doi.org/10.1088/1361-648X/aba982DOI Listing

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