| Literature DB >> 28476085 |
Guo-Wei Zhou1,2, Xiao-Fen Guan1, Yu-Hao Bai1,3, Zhi-Yong Quan1,2, Feng-Xian Jiang1,2, Xiao-Hong Xu4,5.
Abstract
We study the magnetic properties of an epitaxial growth bilayer composed of ferromagnetic La0.7Sr0.3MnO3 (LSMO) and paramagnetic LaNiO3 (LNO) on SrTiO3 (STO) substrates. We find that the stack order of the bilayer heterostructure plays a key role in the interfacial coupling strength, and the coupling at the LSMO(top)/LNO(bottom) interface is much stronger than that at the LNO(top)/LSMO(bottom). Moreover, a strong spin glass state has been observed at the LSMO/LNO interface, which is further confirmed by two facts: first, that the dependence of the irreversible temperature on the cooling magnetic field follows the Almeida-Thouless line and, second, that the relaxation of the thermal remnant magnetization can be fitted by a stretched exponential function. Interestingly, we also find an exchange bias effect at the LSMO/LNO bilayer below the spin glass freezing temperature, indicating that the exchange bias is strongly correlated with the spin glass state at its interface.Entities:
Keywords: Exchange bias; Interfaces; Magnetic materials; Spin glass state; Stack order
Year: 2017 PMID: 28476085 PMCID: PMC5418175 DOI: 10.1186/s11671-017-2110-0
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1a RHEED patterns of the STO substrate before and after the growth of the LSMO/LNO bilayer; b AFM topography image (2 × 2 μm2) of the STO substrate. The step height corresponds to one monolayer; c XRD spectra of all four types of samples grown on the STO substrate
Fig. 2a Magnetic hysteresis loops of the four different samples at 5 K after zero field-cooling from room temperature. b The H C and M S of LSMO/LNO bilayer dependence on the LNO layer having different thickness. The M S was obtained after saturating at 2 kOe
Fig. 3a M–T curves of the LSMO/LNO bilayer heterostructure are measured under different external magnetic fields, H = 0.05 (black), 0.1 (red), 0.2 (green), 0.4 (blue), 0.8 (light blue), and 1 (purple) kOe, respectively. The solid and dashed lines are the FC and ZFC curves. The corresponding plots of H 2/3 versus T irr and linear fitting to Eq. (1) are shown in the inset. b Time dependence of the thermal remnant magnetization under the cooled magnetic field of 0.1 kOe and linear fitting to Eq. (2)
Fig. 4a M–H loops measured on the LSMO/LNO bilayer at 5 K after an in-plain field-cooling (±5 kOe). The H C and H EB dependence on the cooling field is shown in the inset. b Temperature dependence of H EB and H C for the LSMO/LNO bilayer. The solid lines are the fittings to Eq. (3)