Broadband patterned magnetic microwave absorber
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- Type
- article
- Published
- 2014-07-30
- Cited by
- 184
- References
- 31
- OpenAlex
- https://openalex.org/W1980607214
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120793811
Keywords
Microwave, Broadband, Materials science, Bandwidth (computing), Optics
References
- Characterization and microwave resonance in nanocrystalline FeCoNi flake composite
- Effects of aspect ratio and particle size on the microwave properties of Fe-Cr-Si-Al alloy flakes
- Microwave-absorbing properties of shape-optimized carbonyl iron particles with maximum microwave permeability
- Shape-optimized ferromagnetic particles with maximum theoretical microwave susceptibility
- Enhanced microwave absorption of Fe nanoflakes after coating with SiO2 nanoshell
- High-frequency behavior of magnetic composites
- Investigation on peak frequency of the microwave absorption for carbonyl iron/epoxy resin composite
- A review and analysis of microwave absorption in polymer composites filled with carbonaceous particles
- Broadband electromagnetic wave absorbers prepared by grading magnetic powder density
- Broadband and thin microwave absorber of nickel-zinc ferrite/carbonyl iron composite
- Electromagnetic and microwave absorption properties of Alnico powder composites
- Internal strain dependence of complex permeability of ball milled carbonyl iron powders in 2–18 GHz
- Thin smart multilayer microwave absorber based on hybrid structure of polymer and carbon nanotubes
- Influence of the interface reflections on the microwave reflection loss for carbonyl iron/paraffin composite backed by a perfect conduction plate
- Extrinsic permeability of Fe-based flake composites from intrinsic parameters: A comparison between the aligned and random cases
- High frequency properties of polymer composites consisting of aligned Fe flakes
- Annealing temperature effect on microstructure, magnetic and microwave properties of Fe-based amorphous alloy powders
- Integrating non-planar metamaterials with magnetic absorbing materials to yield ultra-broadband microwave hybrid absorbers
- Facile preparation, formation mechanism and microwave absorption properties of porous carbonyl iron flakes
- Ultrathin and broadband high impedance surface absorbers based on metamaterial substrates.
Cited by
- High-performance terahertz wave absorbers made of silicon-based metamaterials
- Ultra-wideband microwave absorber by connecting multiple absorption bands of two different-sized hyperbolic metamaterial waveguide arrays
- Design of a broadband electromagnetic wave absorber using a metamaterial technology
- Broadband microwave absorption property of a thin metamaterial containing patterned magnetic sheet
- Synthesis and excellent electromagnetic absorbing properties of copolymer (N-methylpyrrole-co-pyrrole) and Ba–Nd–Cr ferrite
- Preparation of Ag-coated hollow microspheres via electroless plating for application in lightweight microwave absorbers
- Broadband and Tunable High‐Performance Microwave Absorption of an Ultralight and Highly Compressible Graphene Foam
- A broadband far-field microwave absorber with a sandwich structure
- Dual-band microwave absorption properties of metamaterial absorber composed of split ring resonator on carbonyl iron powder composites
- Broadening the absorption bandwidth of metamaterial absorbers by transverse magnetic harmonics of 210 mode
- Composition and structure control of ultralight graphene foam for high-performance microwave absorption
- Analysis and Design of Multilayered Broadband Radar Absorbing Metamaterial Using the 3-D Printing Technology-Based Method
- Characterisation of powders using microwave cavity perturbation
- A high-performance broadband terahertz absorber based on sawtooth-shape doped-silicon
- Wide-angle, polarization-insensitive and broadband absorber based on eight-fold symmetric SRRs metamaterial
- A design of ultra-broadband metamaterial absorber
- Calculation and Analysis of the Effective Electromagnetic Parameters of Periodic Structural Radar Absorbing Material Using Simulation and Inversion Methods
- Ultralight graphene aerogel enhanced with transformed micro-structure led by polypyrrole nano-rods and its improved microwave absorption properties
- A novel two-layer periodic stepped structure for effective broadband radar electromagnetic absorption
- Lightweight ferroferric oxide nanotubes with natural resonance property and design for broadband microwave absorption
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