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Dive into the research topics where Jinwu Wei is active.

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Featured researches published by Jinwu Wei.


Review of Scientific Instruments | 2014

An induction method to calculate the complex permeability of soft magnetic films without a reference sample

Jinwu Wei; Jianbo Wang; Qingfang Liu; Xiaoyu Li; Derang Cao; Xiaojun Sun

A new analytical method has been proposed by utilizing an electromagnetic induction principle with a short-circuited microstrip line jig and the complex permeability spectra can be calculated without a known reference sample. The new method using the short-circuited microstrip line can exhibit higher sensitivity and a wider frequency band than coplanar waveguide and pick-up coil. Two magnetic thin films having a good in-plane uniaxial anisotropy are measured by using the induction method. The results show typical complex permeability spectra in good agreement with the theoretical analytical results. The measured permeability values are verified by comparing with the initial susceptibility derived from the sweeping field results. The difference of measured permeability values is less than 5%.


Journal of Physics D | 2015

Top-down control of dynamic anisotropy in permalloy thin films with stripe domains

Jinwu Wei; Zengtai Zhu; Hongmei Feng; Jinlu Du; Qingfang Liu; Jianbo Wang

Permalloy films with different thickness were prepared for comparison, and the dynamic properties of the stripe domains were investigated by using a vector network analyzer ferromagnetic resonance (VNA-FMR) technique. A top-down approach was used to control the thickness of the films. In the measurement of permeability spectra, an applied magnetic field H app was employed parallel and perpendicular to the stripe domains, respectively. Dynamic pseudo-uniaxial anisotropy fields are derived. In order to explain the anisotropy variation of permalloy films, a theoretical model has been proposed, and the result shows that the pseudo-uniaxial anisotropy can be attributed to the contributions of saturation magnetization, exchange interaction, perpendicular anisotropy, and film thickness. In addition, with the increase of H app, the stripe domains gradually rotate towards the direction of the applied field, which can be clearly observed by magnetic force microscopy. Moreover, the dynamic permeability spectra exhibit a rhythmic variation dependent on the rotation of the stripe domains, i.e. the relationship between the rotational stripe domains and resonance frequency.


Journal of Physics D | 2016

Annealing influence on the exchange stiffness constant of Permalloy films with stripe domains

Jinwu Wei; Zengtai Zhu; Chengkun Song; Hongmei Feng; Panpan Jing; Xiangqian Wang; Qingfang Liu; Jianbo Wang

An investigation of the annealing influence on the stripe domains structure in Permalloy films has been performed by comparing the static and dynamic magnetic properties. An increasing exchange stiffness constant A ex is found when the annealing temperature rises. The magnetic force microscopy images show that the width of stripe domain increases with the increase of annealing temperature, and the increasing exchange stiffness constant is considered to be the most prominent reason. A perpendicular standing spin-wave model is used to deduce the A ex from the evolution of resonance frequencies, and the A ex increases nearly twice from 7.2 × 10−7 ergs cm−1 for the as-deposited film to 12.9 × 10−7 ergs cm−1 for the film annealing at 400 °C. Micromagnetic calculation is also used to compute the magnetization configuration, and the results agree well with the experimental conclusions.


Journal of Applied Physics | 2014

Electrodeposition of FeCoCd films with in-plane uniaxial magnetic anisotropy for microwave applications

Erxi Feng; Zhenkun Wang; Hongwei Du; Jinwu Wei; Derang Cao; Qingfang Liu; Jianbo Wang

FeCoCd thin films with 500 nm thickness are directly prepared through electrodeposition in the sulphate bath in which glycine and citric acid were added as complex agents. The composition, structure, and magnetic of FeCoCd films were investigated as a function of Cd2+ concentration, cathode current density, and deposition temperature. A wonderful soft magnetic FeCoCd film was prepared and its coercivity of easy axis and hard axis are 5 Oe and 4 Oe, respectively. The natural resonance frequency is about 3.0 GHz, which imply that the FeCoCd film is potential candidate for high frequency applications.


Review of Scientific Instruments | 2015

A short-circuited coplanar waveguide to measure the permeability of magnetic thin films: Comparison with short-circuited microstrip line

Jinwu Wei; Hongmei Feng; Zengtai Zhu; Qingfang Liu; Jianbo Wang

A short-circuited coplanar waveguide jig is proposed for complex permeability measurements in soft magnetic FeNi thin films. Measurements using a short-circuited microstrip line are also performed for comparison and analyzed using the Landau-Lifshitz-Gilbert equation.


Journal of Alloys and Compounds | 2013

Magnetic properties and microstructure investigation of electrodeposited FeNi/ITO films with different thickness

Derang Cao; Zhenkun Wang; Erxi Feng; Jinwu Wei; Jianbo Wang; Qingfang Liu


Journal of Magnetism and Magnetic Materials | 2017

Synthesis, characterization and magnetic properties of NiFe2−xCexO4 nanoribbons by electrospinning

Jianan Li; Panpan Jing; Xinlei Zhang; Derang Cao; Jinwu Wei; Lining Pan; Zhenlin Liu; Jianbo Wang; Qingfang Liu


Thin Solid Films | 2015

Synthesis, nanostructure and magnetic properties of FeCo-reduced graphene oxide composite films by one-step electrodeposition

Derang Cao; Hao Li; Zhenkun Wang; Jinwu Wei; Jianbo Wang; Qingfang Liu


Journal of Magnetism and Magnetic Materials | 2017

Understanding stripe domains in Permalloy films via the angular dependence of permeability spectra

Jinwu Wei; Hongmei Feng; Zengtai Zhu; Chengkun Song; Xiangqian Wang; Qingfang Liu; Jianbo Wang


Journal of The Electrochemical Society | 2017

The Temperature-Dependent Microstructure and Magnetic Parameters of FeCo Films

Xiaohong Cheng; Derang Cao; Jinlu Du; Linin Pan; Hongmei Feng; Zengtai Zhu; Jinwu Wei; Jianbo Wang; Qingfang Liu

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Jinlu Du

Ministry of Education

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Erxi Feng

Ministry of Education

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