We studied magnetic properties and GMI effect of Finemet-type FeCuNbSiB microwires. We observed that GMI effect and magnetic softness of microwires produced by the Taylor-Ulitovski technique, can be tailored by either controlling magnetoelastic anisotropy of as-prepared FeCuNbSiB microwires or controlling their structure by heat treatment or changing the fabrication conditions. GMI effect has been observed in as-prepared Fe-rich microwires with nanocrystalline structure
Thin magnetic wires can present excellent soft magnetic properties (with coercivities up to 4 A/m), ...
Thin magnetic wires can present excellent soft magnetic properties (with coercivities up to 4 A/m), ...
Amorphous glass-coated microwires are ideal material for miniaturized applications for sensing the t...
We studied magnetic properties and GMI effect of Finemet-type FeCuNbSiB microwires. We observed that...
We present our studies of the factors affecting soft magnetic properties and giant magnetoimpedance ...
We present comparative studies of magnetic properties and giant magnetoimpedance (GMI) effect of Fe ...
We present an overview of the factors affecting soft magnetic properties, fast domain wall propagati...
Abstract. In this paper we present results on correlation of GMI effect and soft magnetic behavior i...
Abstract: In this paper we experimentally studied GMI effect and soft magnetic behavior of Co-rich m...
We report on preparation and magnetic properties of Fe71.7B13.4Si11Nb3Ni0.9 glass-coated microwire w...
Amorphous glass-coated microwires are ideal material for miniaturized applications for sensing the t...
We studied giant magnetoimpedance (GMI) effect in magnetically soft amorphous Fe and Co-rich microwi...
We overviewed the correlation between the structure, magnetic and transport properties of magnetic m...
We studied giant magnetoimpedance (GMI) effect in magnetically soft amorphous Co-rich microwires in ...
Abstract: The giant magneto-impedance (GMI) effect has been studied in 3 different families of amorp...
Thin magnetic wires can present excellent soft magnetic properties (with coercivities up to 4 A/m), ...
Thin magnetic wires can present excellent soft magnetic properties (with coercivities up to 4 A/m), ...
Amorphous glass-coated microwires are ideal material for miniaturized applications for sensing the t...
We studied magnetic properties and GMI effect of Finemet-type FeCuNbSiB microwires. We observed that...
We present our studies of the factors affecting soft magnetic properties and giant magnetoimpedance ...
We present comparative studies of magnetic properties and giant magnetoimpedance (GMI) effect of Fe ...
We present an overview of the factors affecting soft magnetic properties, fast domain wall propagati...
Abstract. In this paper we present results on correlation of GMI effect and soft magnetic behavior i...
Abstract: In this paper we experimentally studied GMI effect and soft magnetic behavior of Co-rich m...
We report on preparation and magnetic properties of Fe71.7B13.4Si11Nb3Ni0.9 glass-coated microwire w...
Amorphous glass-coated microwires are ideal material for miniaturized applications for sensing the t...
We studied giant magnetoimpedance (GMI) effect in magnetically soft amorphous Fe and Co-rich microwi...
We overviewed the correlation between the structure, magnetic and transport properties of magnetic m...
We studied giant magnetoimpedance (GMI) effect in magnetically soft amorphous Co-rich microwires in ...
Abstract: The giant magneto-impedance (GMI) effect has been studied in 3 different families of amorp...
Thin magnetic wires can present excellent soft magnetic properties (with coercivities up to 4 A/m), ...
Thin magnetic wires can present excellent soft magnetic properties (with coercivities up to 4 A/m), ...
Amorphous glass-coated microwires are ideal material for miniaturized applications for sensing the t...