Dual-band terahertz antenna based on a novel photonic band gap structure

SWATHI P, ANJUM N N. Design of microstrip patch antenna for 2.45 GHz wireless applications[J]. Journal of recent research in engineering and technology, 2015, 2(4).

HE Y, CHEN Y, ZHANG L, et al. An overview of terahertz antennas[J]. China communications, 2020, 17(7): 124–165.

Article  Google Scholar 

GEETHARAMANI G, AATHMANESAN T. Split ring resonator inspired THz antenna for breast cancer detection[J]. Optics & laser technology, 2020, 126: 106111.

Article  Google Scholar 

DASH S, PATNAIK A. Impact of silicon-based substrates on graphene THz antenna[J]. Physica E: low-dimensional systems and nanostructures, 2021, 126: 114479.

Article  Google Scholar 

SACHAN R, DHUBKARYA D C. Photonic band gap structure microstrip patch antenna for WiMAX and Wi-Fi application[J]. Photonic network communications, 2021, 41(3): 280–286.

Article  Google Scholar 

DAS S, MITRA D, CHAUDHURI S R B. Fractal loaded circular patch antenna for super wide band operation in THz frequency region[J]. Optik, 2021, 226: 165528.

Article  ADS  Google Scholar 

PEREIRA J P P, DA SILVA J P, DE Á, et al. Microstrip antennas design based in periodic and quasiperiodic PBG symmetries[J]. Microwave and optical technology letters, 2015, 57(12): 2914–2917.

Article  Google Scholar 

PEREIRA J P P, DA SILVA J P, DE ANDRADE H D. A new design and analysis of a hexagonal PBG microstrip antenna[J]. Microwave and optical technology letters, 2015, 57(9): 2147–2151.

Article  Google Scholar 

DA SILVA J L, DE ANDRADE H D, MAIA A S, et al. Performance of microstrip patch antenna due EBG/PBG arrangements insertion[J]. Microwave and optical technology letters, 2016, 58(12): 2933–2937.

Article  Google Scholar 

SAMINENI P, KHAN T, DE A. Modeling of electromagnetic band gap structures: a review[J]. International journal of RF and microwave computer - aided engineering, 2017, 27(2): e21055.

Article  Google Scholar 

KUSHWAHA R K, KARUPPANAN P, SRIVASTAVA Y. Proximity feed multiband patch antenna array with SRR and PBG for THz applications[J]. Optik, 2018, 175: 78–86.

Article  ADS  Google Scholar 

KHEZZAR D, KHEDROUCHE D, DENIDNI T A. New design of a broadband PBG-based antenna for THz band applications[J]. Photonics and nanostructures-fundamentals and applications, 2021, 46: 100947.

Google Scholar 

JHA K R, SINGH G. Analysis and design of terahertz microstrip antenna on photonic bandgap material[J]. Journal of computational electronics, 2012, 11(4): 364–373.

Article  Google Scholar 

KAZEMI F. Dual band compact fractal THz antenna based on CRLH-TL and graphene loads[J]. Optik, 2020, 206: 164369.

Article  ADS  Google Scholar 

NEJATI A, SADEGHZADEH R A, GERAN F. Effect of photonic crystal and frequency selective surface implementation on gain enhancement in the microstrip patch antenna at terahertz frequency[J]. Physica B: condensed matter, 2014, 449: 113–120.

Article  ADS  Google Scholar 

KUSHWAHA R K, KARUPPANAN P, MALVIYA L D. Design and analysis of novel microstrip patch antenna on photonic crystal in THz[J]. Physica B: condensed matter, 2018, 545: 107–112.

Article  ADS  Google Scholar 

VAHDATI A, PARANDIN F. Antenna patch design using a photonic crystal substrate at a frequency of 1.6 THz[J]. Wireless personal communications, 2019, 109(4): 2213–2219.

Article  Google Scholar 

THAKUR S, SINGH N. Circular-slot THz antenna on PBG substrate for cancer detection[J]. Optik, 2021, 242: 167355.

Article  ADS  Google Scholar 

WANG Y. Design of microstrip antenna based on left-hand materials and photonic bandgap structure[D]. Xian: University of Electronic Science and Technology of Xian, 2015: 20–36. (in Chinese)

Google Scholar 

CHEN C. Calculation of band structure of two-dimensional photonic crystal[D]. Lanzhou: Lanzhou University, 2009: 3–7. (in Chinese)

Google Scholar 

RABBANI M S, GHAFOURI-SHIRAZ H. Size improvement of rectangular microstrip patch antenna at MM-wave and terahertz frequencies[J]. Microwave and optical technology letters, 2015, 57(11): 2585–2589.

Article  Google Scholar 

NEJATI A, ZARRABI F B, RAHIMI M, et al. The effect of photonic crystal arrangement on metamaterial characteristic at THz domain[J]. Optik-international journal for light and electron optics, 2015, 126(19): 2153–2156.

Article  Google Scholar 

KUSHWAHA R K, KARUPPANAN P. Enhanced radiation characteristics of graphene-based patch antenna array employing photonic crystals and dielectric grating for THz applications[J]. Optik, 2020, 200: 163422.

Article  ADS  Google Scholar 

AHMAD I, ULLAH S, ULLAH S, et al. Design and analysis of a photonic crystal based planar antenna for THz applications[J]. Electronics, 2021, 10(16): 1941.

Article  Google Scholar 

SHI J, TIAN L L, SU M Y, et al. Based on the surface of the terahertz optical fiber Bragg biosensor[J]. Journal of optoelectronics-lasers, 2022, 33(2): 127–132. (in Chinese)

Google Scholar 

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