In this article, we show how the microwave properties of ferromagnetic nanowires electrodeposited into a porous polymer template depend on various parameters such as the geometrical parameters of the nanowires array and elaboration conditions. Our nanowires behave as strong uniaxial nanomagnets and exhibit zero-field resonance frequencies tunable up to 36 GHz. Novel microwave devices such as circulators and filters, using a porous polymer template loaded with metallic nanowires, are discussed. An accurate knowledge of magnetic and dielectric properties of the loaded polymer template is mandatory for the design of such devices. (C) 2008 Elsevier B.V. All rights reserved
The microwave absorption properties of arrays of magnetic nanowires electrodeposited in nanoporous m...
This paper proposes two new methods to obtain "multizero" stopband filters, using microstrip lines o...
Unbiased ferromagnetic nanowires arrays were used to conceive and fabricate planar microwave circula...
Abstract. Microwave devices as circulators or tunable filters demand nowadays small size and broad b...
Low-cost spintronic devices functioning in zero applied magnetic field are required for bringing the...
Microwave devices are currently used for applications in various areas of telecommunications, from t...
Microwave devices are currently used in various areas of telecommunications, from wireless systems t...
The growing interest in integrated microwave devices for automotive and wireless communication deman...
International audienceUnbiased planar microwave circulators were fabricated by electrodeposition of ...
This work aims to study the ferromagnetic resonance absorption of microwave electromagnetic signals ...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
In this paper, we first present an electromagnetic characterisation of a composite substrate based o...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
The microwave absorption properties of arrays of magnetic nanowires electrodeposited in nanoporous m...
This paper proposes two new methods to obtain "multizero" stopband filters, using microstrip lines o...
Unbiased ferromagnetic nanowires arrays were used to conceive and fabricate planar microwave circula...
Abstract. Microwave devices as circulators or tunable filters demand nowadays small size and broad b...
Low-cost spintronic devices functioning in zero applied magnetic field are required for bringing the...
Microwave devices are currently used for applications in various areas of telecommunications, from t...
Microwave devices are currently used in various areas of telecommunications, from wireless systems t...
The growing interest in integrated microwave devices for automotive and wireless communication deman...
International audienceUnbiased planar microwave circulators were fabricated by electrodeposition of ...
This work aims to study the ferromagnetic resonance absorption of microwave electromagnetic signals ...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
In this paper, we first present an electromagnetic characterisation of a composite substrate based o...
This paper shows the microwave properties of a magnetic nanowired substrate studied in a microstrip ...
The microwave absorption properties of arrays of magnetic nanowires electrodeposited in nanoporous m...
This paper proposes two new methods to obtain "multizero" stopband filters, using microstrip lines o...
Unbiased ferromagnetic nanowires arrays were used to conceive and fabricate planar microwave circula...