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Retraction Notice

Published online by Cambridge University Press:  21 December 2016

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Abstract

Type
Retraction Notice
Copyright
Copyright © Cambridge University Press and the European Microwave Association 2016 

Introducing the new wideband small plate antennas with engraved voids to form new geometries based on CRLH MTM-TLs for wireless applications – RETRACTION

MOHAMMAD ALIBAKHSHI, KENARI

doi: 10.1017/S1759078714000099, Published by Cambridge University Press, 10 March 2014

A new compact UWB traveling-wave antenna based on CRLH-TLs for embedded electronic systems – RETRACTION

MOHAMMAD ALIBAKHSHI KENARI

doi: 10.1017/S1759078714001020, Published by Cambridge University Press, 10 August 2014

Miniaturized printed monopole antenna with applying the modified conductor-backed plane and three embedded strips based on CPW for multi-band telecommunication devices – RETRACTION

MOHAMMAD ALIBAKHSHI-KENARI

doi: 10.1017/S1759078714001494, Published by Cambridge University Press, 10 December 2014

Modeling and constructing the microstrip notch-loaded rectangular S-shaped patch antennas using L-strip feeding for multi-band frequency performances in the recent wireless telecommunication systems – RETRACTION

MOHAMMAD ALIBAKHSHI-KENARI

doi: 10.1017/S1759078714001512 (About DOI), Published by Cambridge University Press, 18 March 2015

Significant measureable development of inductance gain per unit of space in loop fractals – RETRACTION

MOHAMMAD ALIBAKHSHI-KENARI

doi: 10.1017/S1759078715000045, Published by Cambridge University Press, 24 March 2015

Designing an ultra-wideband electromagnetic waves receiver with new architecture for RF and wireless applications – RETRACTION

MOHAMMAD ALIBAKHSHI-KENARI, MOHAMMAD NASER-MOGHADASI, RAMAZAN ALI SADEGHZADEH, AURORA ANDÚJAR AND JAUME ANGUERA

doi: 10.1017/S1759078715000835, Published by Cambridge University Press, 24 May 2015

It has come to our attention that a number of papers published in the past two years by the same author [Reference Alibakhshi Kenari1Reference Alibakhshi Kenari, Naser-Moghadasi, Sadeghzadeh, Andújar and Anguera6] contain significant overlaps with other articles previously published elsewhere [Reference Alibakhshi Kenari7Reference Khalesi, Nabavi and Mirzakouchaki11]. This constitutes a breach of the publication policy of Cambridge University Press and these papers have therefore been retracted.

We note in particular that one of the articles [Reference Alibakhshi Kenari2] reproduced text, and a figure, from an earlier draft version of an article by Shoute and Berlage [Reference Shoute and Barlage8]. We emphasise the originality and precedence of [Reference Shoute and Barlage8], even though its eventual publication date was later than that of [Reference Alibakhshi Kenari2].

References

REFERENCES

[1] Alibakhshi Kenari, M.: A new compact UWB traveling-wave antenna based on CRLH-TLs for embedded electronic systems. Int. J. of Microw. Wirel. Technol., (2014), doi: 10.1017/S1759078714001020 Google Scholar
[2] Alibakhshi Kenari, M.: Significant measureable development of inductance gain per unit of space in loop fractals. Int. J. of Microw. Wirel. Technol., (2014), doi: 10.1017/S1759078715000045 Google Scholar
[3] Alibakhshi Kenari, M.: Modeling and constructing the microstrip notch-loaded rectangular S-shaped patch antennas using L-strip feeding for multi-band frequency performances in the recent wireless telecommunication systems. Int. J. of Microw. Wirel. Technol., (2014), doi: 10.1017/S1759078714001512 Google Scholar
[4] Alibakhshi Kenari, M.: Miniaturized printed monopole antenna with applying the modified conductor-backed plane and three embedded strips based on CPW for multi-band telecommunication devices. Int. J. of Microw. Wirel. Technol., (2014), doi: 10.1017/ S1759078714001494 Google Scholar
[5] Alibakhshi Kenari, M.: Introducing the new wideband small plate antennas with engraved voids to form new geometries based on CRLH MTM-TLs for wireless applications. Int. J. of Microw. Wirel. Technol., 6 (2014), 629637 Google Scholar
[6] Alibakhshi Kenari, M.; Naser-Moghadasi, M.; Sadeghzadeh, R. A.; Andújar, A.; Anguera, J.: Designing an ultra-wideband electromagnetic waves receiver with new architecture for RF and wireless applications. Int. J. of Microw. Wirel. Technol., (2015), doi: 10.1017/ S1759078715000835 Google Scholar
[7] Alibakhshi Kenari, M.: A new microstrip antenna for today's needs, HCTL Open Int. J. Technol. Innov. Res., Special edition on Advanced Technique of Estimation Applications in Electrical Engineering (2013), 4048 Google Scholar
[8] Shoute, G; Barlage, D. W.; Fractal loop inductors. IEEE Trans. Magn., 51 (2015), 2300108 Google Scholar
[9] Moosazadeh, M.; Esmati, Z.: Coplanar waveguide fed monopole antenna with dual-band operations using square-shaped slot on conductor-backed plane. Microwave Opt. Technol. Lett., 54 (2012), 28382841.Google Scholar
[10] Alibakhshi Kenari, M.: Novel UWB planar and minimized antennas based on composite right/left-handed transmission lines for electromagnetic applications. Int. J. of Electromagn. Appl., 3 (2013), 6569.Google Scholar
[11] Khalesi, H.; Nabavi, A.; Mirzakouchaki, S.: A very low complexity IR-UWB transmitter with BPSK modulation for balanced antenna. IEEJ Trans. Electrical Electronic Eng., 10 (2015), 144148.Google Scholar

This retraction applies to the following article(s):

A new compact UWB traveling-wave antenna based on CRLH-TLs for embedded electronic systems

Designing an ultra-wideband electromagnetic waves receiver with new architecture for RF and wireless applications

Introducing the new wideband small plate antennas with engraved voids to form new geometries based on CRLH MTM-TLs for wireless applications

Miniaturized printed monopole antenna with applying the modified conductor-backed plane and three embedded strips based on CPW for multi-band telecommunication devices

Modeling and constructing the microstrip notch-loaded rectangular S-shaped patch antennas using L-strip feeding for multi-band frequency performances in the recent wireless telecommunication systems

Significant measureable development of inductance gain per unit of space in loop fractals