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2020 | OriginalPaper | Buchkapitel

4. Radar Absorber Design using Two-Dimensional Materials

verfasst von : Delme Winson, P. S. Shibu, Balamati Choudhury

Erschienen in: Multiscale Modelling of Advanced Materials

Verlag: Springer Singapore

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Abstract

Radar absorbers are one among the promising technologies toward radar cross section reduction at microwave frequencies. Hence, the key role of radar absorber is emerging in military aviation platform. Although the research on radar absorbers are continuing since decades using multilayer concept, viz., ferrite-based radar absorbers, they are narrow band in nature. Recently artificially engineered materials widely known as metamaterials are playing an important role toward performance enhancement of radar absorbers. This chapter provides a systematic review of the advances in metamaterial-based radar absorbers in conjunction with graphene and conducting polymer.

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Literatur
1.
Zurück zum Zitat Knott EF (2004) Radar cross section, 2nd edn. SciTech Publishing Inc., Raleigh Knott EF (2004) Radar cross section, 2nd edn. SciTech Publishing Inc., Raleigh
2.
Zurück zum Zitat Hakla N, Ghosh S, Srivastava KV, Shukla A (2016) A dual-band conformal metamaterial absorber for curved surface. In: URSI international symposium on electromagnetic theory, August 2016 Hakla N, Ghosh S, Srivastava KV, Shukla A (2016) A dual-band conformal metamaterial absorber for curved surface. In: URSI international symposium on electromagnetic theory, August 2016
3.
Zurück zum Zitat Jang Y, Yoo M, Lim S (2013) Conformal metamaterial absorber for curved surface. OSA Publ 21(20):24163 Jang Y, Yoo M, Lim S (2013) Conformal metamaterial absorber for curved surface. OSA Publ 21(20):24163
4.
Zurück zum Zitat Zhong YK, Fu SM, Tu MH, Chen BR, Lin A (2016) A multimetal broadband metamaterial perfect absorber with compact dimension. IEEE Photonics J 8(2):1 Zhong YK, Fu SM, Tu MH, Chen BR, Lin A (2016) A multimetal broadband metamaterial perfect absorber with compact dimension. IEEE Photonics J 8(2):1
5.
Zurück zum Zitat Costa F, Kazemzadeh A, Genovesi S, Monorchio A (2014) Electromagnetic absorbers based on frequency selective surfaces. Forum Electromagn Res Methods Appl Technol Costa F, Kazemzadeh A, Genovesi S, Monorchio A (2014) Electromagnetic absorbers based on frequency selective surfaces. Forum Electromagn Res Methods Appl Technol
6.
Zurück zum Zitat Zhang YP, Li TT, Zhang HY, Taylor AJ, Chen HT, Azad AK (2015) Independently tunable polarization-insensitive dual-band metamaterial perfect absorber based on graphene at mid- infrared frequencies. Sci Rep Zhang YP, Li TT, Zhang HY, Taylor AJ, Chen HT, Azad AK (2015) Independently tunable polarization-insensitive dual-band metamaterial perfect absorber based on graphene at mid- infrared frequencies. Sci Rep
7.
Zurück zum Zitat Yuan W, Cheng Y (2014) Low-frequency and broadband metamaterial absorber based on lumped Elements: design, characterization and experiment. Appl Phys A 117(4):1915–1921CrossRef Yuan W, Cheng Y (2014) Low-frequency and broadband metamaterial absorber based on lumped Elements: design, characterization and experiment. Appl Phys A 117(4):1915–1921CrossRef
8.
Zurück zum Zitat Lim D, Lee D, Lim S (2016) Angle- and polarization-insensitive metamaterial absorber using via array. Sci Rep Lim D, Lee D, Lim S (2016) Angle- and polarization-insensitive metamaterial absorber using via array. Sci Rep
9.
Zurück zum Zitat Xiong H, Hong JS, Luo CM, Zhong LL (2013) An ultrathin and broadband metamaterial absorber using multi-layer structures. J Appl Phys 114:064109CrossRef Xiong H, Hong JS, Luo CM, Zhong LL (2013) An ultrathin and broadband metamaterial absorber using multi-layer structures. J Appl Phys 114:064109CrossRef
10.
Zurück zum Zitat Naishadham K (1993) Shielding effectiveness of conducting polymers. IEEE Trans Electromagn Compat 34(1):47–50CrossRef Naishadham K (1993) Shielding effectiveness of conducting polymers. IEEE Trans Electromagn Compat 34(1):47–50CrossRef
11.
Zurück zum Zitat Trivedi DC (2002) A new approach for polyaniline synthesis. In: International conference on science and technology of synthetic metals, August 2002 Trivedi DC (2002) A new approach for polyaniline synthesis. In: International conference on science and technology of synthetic metals, August 2002
12.
Zurück zum Zitat Bozzi M, Pierantoni L, Bellucci S (2015) Applications of graphene at microwave frequencies. Radio Eng 24(3)CrossRef Bozzi M, Pierantoni L, Bellucci S (2015) Applications of graphene at microwave frequencies. Radio Eng 24(3)CrossRef
13.
Zurück zum Zitat Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA (2004) Electric field effect in atomically thin carbon films. Science 6:666–669CrossRef Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV, Grigorieva IV, Firsov AA (2004) Electric field effect in atomically thin carbon films. Science 6:666–669CrossRef
14.
Zurück zum Zitat Gao C, Jiang Y, Zhang J, Cao W, Gao X, Yu Z, Wang J (2016) Graphene-based wideband absorbing screen with radar cross section reduction. In: 11th international symposium on antennas, propagation and EM theory Gao C, Jiang Y, Zhang J, Cao W, Gao X, Yu Z, Wang J (2016) Graphene-based wideband absorbing screen with radar cross section reduction. In: 11th international symposium on antennas, propagation and EM theory
15.
Zurück zum Zitat Deng G, Xia T, Yang J, Yin Z (2017) A graphene-based broadband terahertz metamaterial modulator. J Electromagn Waves Appl 31:2016–2024CrossRef Deng G, Xia T, Yang J, Yin Z (2017) A graphene-based broadband terahertz metamaterial modulator. J Electromagn Waves Appl 31:2016–2024CrossRef
16.
Zurück zum Zitat Kuzmin DA, Bychkovand IV, Shavrov VG (2015) Influence of graphene coating on speckle-pattern rotation of light in gyrotropic optical fiber. Opt Lett 40(6):890–893CrossRef Kuzmin DA, Bychkovand IV, Shavrov VG (2015) Influence of graphene coating on speckle-pattern rotation of light in gyrotropic optical fiber. Opt Lett 40(6):890–893CrossRef
17.
Zurück zum Zitat Andryieuski A, Pizzocchero F, Booth T, Boggild P, Lavrinenko AV (2013) Effective surface conductivity approach for graphene metamaterial based terahertz devices. In: International quantum electronics conference, May 2013 Andryieuski A, Pizzocchero F, Booth T, Boggild P, Lavrinenko AV (2013) Effective surface conductivity approach for graphene metamaterial based terahertz devices. In: International quantum electronics conference, May 2013
Metadaten
Titel
Radar Absorber Design using Two-Dimensional Materials
verfasst von
Delme Winson
P. S. Shibu
Balamati Choudhury
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-2267-3_4

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