Cajetan Nlebedim
United States Department of Energy
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Featured researches published by Cajetan Nlebedim.
ieee international magnetics conference | 2015
Yan Ni; Zuorong Zhang; Cajetan Nlebedim; R. L. Hadimani; David Jiles
Hall-effect (HE) sensors based on high-quality Mn-doped Bi2Te3 topological insulator (TI) thin films have been systematically studied in this paper. Improvement of Hall sensitivity is found after doping the magnetic element Mn into Bi2Te3. The sensors with low Mn concentrations, MnxBi2-xTe3, x = 0.01 and 0.08 show the linear behavior of Hall resistance with sensitivity about 5 Ω/T. And their Hall sensitivity shows weak dependence on temperature. For sensors with high Mn concentration (x = 0.23), the Hall resistance with respect to magnetic field shows a hysteretic behavior. Moreover, its sensitivity shows almost eight times as high as that of the HE sensors with low Mn concentration. The highest sensitivity can reach 43 Ω/T at very low magnetic field. This increase of Hall sensitivity is caused by the occurrence of anomalous HE (AHE) after ferromagnetic phase transition. Our work indicates that the magnetic-element-doped TIs with AHE are good candidates for HE sensors.
Journal of Applied Physics | 2015
Yan Ni; Zhen Zhang; Cajetan Nlebedim; David Jiles
Multiferroic materials exhibit magnetoelectric (ME) coupling and promise new device applications including magnetic sensors, generators, and filters. An effective method for developing ME materials with enhanced ME effect is achieved by the coupling through the interfacial strain between piezoelectric and magnetostrictive materials. In this study, the electrical and magnetic properties of Ga doped magnetoelectric CoGaxFe2−xO4/BaTiO3 composite are studied systematically. It is found that Ga doping improves the sensitivity of magnetoelastic response and stabilizes the magnetic phase of the composites. More importantly, Ga doping reduces the electrical conductivity of composite, as well as the dielectric loss. An enhancement of the electrostrain with doping Ga is also observed. Quantitative estimation indicates that magnetoelectric coupling is enhanced for Ga-doped CoGaxFe2−xO4/BaTiO3 composites. Thus, the present work is beneficial to the practical application of composite CoFe2O4/BaTiO3-based multiferroic materials.
AIP Advances | 2016
Yan Ni; Zhen Zhang; Cajetan Nlebedim; David Jiles
We deposited high quality (Sb1−xBix)2Te3 on mica substrate by molecular beam epitaxy and investigated their magnetotransport properties. It is found that the average surface roughness of thin films is lower than 2 nm. Moreover, a local maxima on the sheet resistance is obtained with x = 0.043, indicating a minimization of bulk conductivity at this composition. For (Sb0.957Bi0.043)2Te3, weak antilocalization with coefficient of -0.43 is observed, confirming the existence of 2D surface states. Moreover Shubnikov-de Hass oscillation behavior occurs under high magnetic field. The 2D carrier density is then determined as 0.81 × 1016 m−2, which is lower than that of most TIs reported previously, indicating that (Sb0.957Bi0.043)2Te3 is close to ideal TI composition of which the Dirac point and Fermi surface cross within the bulk bandgap. Our results thus demonstrate the best estimated composition for ideal TI is close to (Sb0.957Bi0.043)2Te3 and will be helpful for designing TI-based devices.
Bulletin of the American Physical Society | 2014
Cajetan Nlebedim; David Jiles
Bulletin of the American Physical Society | 2018
Richard Korneisel; Cajetan Nlebedim; Neelam Prabhu Gaunkar; David Jiles
Bulletin of the American Physical Society | 2017
Yan Ni; Liang Luo; Zhen Zhang; Cajetan Nlebedim; Jigang Wang; David Jiles
Bulletin of the American Physical Society | 2016
Neelam Prabhu Gaunkar; Cajetan Nlebedim; R. L. Hadimani; Irfan Bulu; Y. Q. Song; Mani Mina; David Jiles
Materials evaluation | 2015
Neelam Prabhu Gaunkar; Cajetan Nlebedim; David Jiles
Bulletin of the American Physical Society | 2015
Cajetan Nlebedim; David Jiles
Bulletin of the American Physical Society | 2015
Yan Ni; Zhen Zhang; David Jiles; Cajetan Nlebedim