Fuel quality assurance based on hybrid hexagonal circular hollow core PCF sensing through management of terahertz region operation

P. Russell, Photonic crystal fibers. Adv. Fiber Opt. 299(1), 87–126 (2003)

Google Scholar 

M.S. Hossain, S. Sen, M.M. Hossain, Performance analysis of octagonal photonic crystal fiber (O-PCF) for various communication applications. Phys. Scr. 96(5), 55506–55513 (2021)

Article  ADS  Google Scholar 

M.A. Habib, E. Reyes-Vera, J. Villegas-Aristizabal, M.S. Anower, Numerical modeling of a rectangular hollow-core waveguide for the detection of fuel adulteration in terahertz region. Fibers 8(1), 1–17 (2020)

Google Scholar 

T. Yang, L. Zhang, Y. Shi, S. Liu, Y. Dong, A highly birefringent photonic crystal fiber for terahertz spectroscopic chemical sensing. Sensors 21(5), 1–12 (2021)

Article  Google Scholar 

P.S.J. Russell, Photonic-crystal fibers. J. Light. Technol. 24(12), 4729–4749 (2006)

Article  Google Scholar 

E. Agrell et al., Roadmap of optical communications. J. Opt. (United Kingdom) 18(6), 1–40 (2016)

MathSciNet  Google Scholar 

W.C. Wong, W. Zhou, C.C. Chan, X. Dong, K.C. Leong, Cavity ringdown refractive index sensor using photonic crystal fiber interferometer. Sensors Actuators B Chem. 161(1), 108–113 (2012)

Article  Google Scholar 

M.A. Habib, M.S. Anower, Design and numerical analysis of highly birefringent single mode fiber in THz regime. Opt. Fiber Technol. 47(1), 197–203 (2019)

Article  ADS  Google Scholar 

A. Habib, A.N.Z. Rashed, H.M. El-Hageen, A.M. Alatwi, Extremely sensitive photonic crystal fiber-based cancer cell detector in the terahertz regime. Plasmonics 16(4), 1297–1306 (2021)

Article  Google Scholar 

P.S.J. Russell, P. Hölzer, W. Chang, A. Abdolvand, J.C. Travers, Hollow-core photonic crystal fibres for gas-based nonlinear optics. Nat. Photonics 8(4), 278–286 (2014)

Article  ADS  Google Scholar 

A. Habib, S. Anower, I. Haque, Highly sensitive hollow core spiral fiber for chemical spectroscopic applications. Sensors Int. 1(1), 100011–100021 (2020)

Article  Google Scholar 

A.H.M.I. Ferdous, M.S. Anower, M.A. Habib, A hybrid structured PCF for fuel adulteration detection in terahertz regime. Sens. Bio-Sensing Res. 33(5), 100438–100449 (2021)

Article  Google Scholar 

M.A. Habib, E. Reyes-Vera, J. Villegas-Aristizabal, M.S. Anower, Numerical modeling of a rectangular hollow-core waveguide for the detection of fuel adulteration in terahertz region. Fibers 8(10), 1–17 (2020)

Article  Google Scholar 

T. Yang, C. Ding, R.W. Ziolkowski, Y.J. Guo, An epsilon-near-zero (ENZ) an epsilon-near-zero (ENZ) based, ultra-wide bandwidth terahertz single-polarization single-mode photonic crystal fiber. J. Light. Technol. 39(1), 223–232 (2021)

Article  ADS  Google Scholar 

M.M. Hasan, M. Barid, M.S. Hossain, S. Sen, M.M. Azad, Large effective area with high power fraction in the core region and extremely low effective material loss-based photonic crystal fiber (PCF) in the terahertz (THz) wave pulse for different types of communication sectors. J. Opt. 50(4), 681–688 (2021)

Article  Google Scholar 

P.H. Siegel, Terahertz technology in biology and medicine. IEEE Trans. Microw. Theory Tech. 52(10), 2438–2447 (2004)

Article  ADS  Google Scholar 

M.M.A. Eid, A.N.Z. Rashed, A.A.M. Bulbul, E. Podder, Mono-rectangular core photonic crystal fiber (MRC-PCF) for skin and blood cancer detection. Plasmonics 16(3), 717–727 (2021)

Article  Google Scholar 

A.A. Bulbul, O.S. Faragallah, M. Baz, M.M.A. Eid, A. Nabih, Z. Rashed, Novel Hollow octagonal core photonic crystal fiber ( PCF ) based cholesterol sensor. J. Comput. Electron. 22(5), 56–67 (2021)

Google Scholar 

T. Parvin, K. Ahmed, A.M. Alatwi, A.N.Z. Rashed, Differential optical absorption spectroscopy-based refractive index sensor for cancer cell detection. Opt. Rev. 28(1), 134–143 (2021)

Article  Google Scholar 

B.P. Vempatapu, P.K. Kanaujia, Monitoring petroleum fuel adulteration: a review of analytical methods. TrAC Trends Anal. Chem. 92(1), 1–11 (2017)

Article  Google Scholar 

G.C. Yadav, S. Prakash, G. Sharma, S. Kumar, V. Singh, Detection of kerosene adulteration in automobile fuel with a novel metal clad planar waveguide. Opt. Laser Technol. 119(1), 105589–105599 (2019)

Article  Google Scholar 

V. Rawat, V. Nadkarni, S.N. Kale, Highly sensitive electrical metamaterial sensor for fuel adulteration detection. Def. Sci. J. 66(4), 421–424 (2016)

Article  Google Scholar 

Y.-S. Jin, G.-J. Kim, C.-H. Shon, S.-G. Jeon, J.-I. Kim, Analysis of petroleum products and their mixtures by using terahertz time domain spectroscopy. J. Korean Phys. Soc. 53(4), 1879–1885 (2008)

Article  ADS  Google Scholar 

K.O. Boadu, Effects of adulteration on diesel oil with kerosene fuel in Ghana. J. Appl. Sci. Environ. Manag. 23(7), 1195–1205 (2019)

Google Scholar 

A.H.M.I. Ferdous, M.S. Anower, M.A. Habib, A hybrid structured PCF for fuel adulteration detection in terahertz regime. Sens. Bio-Sens Res. 33(2), 675–685 (2021)

Google Scholar 

A. Gupta, R.K. Sharm, A new method for estimation of automobile fuel adulteration. Air Pollut. 19(1), 7–18 (2010)

Google Scholar 

S.R. Yadav, V.K. Murthy, D. Mishra, B. Baral, Estimation of petrol and diesel adulteration with kerosene and assessment of usefulness of selected automobile fuel quality test parameters. Int. J. Environ. Sci. Technol. 1(4), 253–255 (2005)

Article  Google Scholar 

I. KabirYakasai, P.E. Abas, F. Begum, Proposal of novel photonic crystal fibre for sensing adulterated petrol and diesel with kerosene in terahertz frequencies. IET Optoelectron.Optoelectron. 14(5), 319–326 (2020)

Article  Google Scholar 

A.A.-M. Bulbul, A.N.Z. Rashed, H.M. El-Hageen, A.M. Alatwi, Design and numerical analysis of an extremely sensitive PCF-based sensor for detecting kerosene adulteration in petrol and diesel. Alexandria Eng. J. 60(6), 5419–5430 (2021)

Article  Google Scholar 

A.H.M.I. Ferdous, M.S. Anower, A. Musha, M.A. Habib, M.A. Shobug, A heptagonal PCF-based oil sensor to detect fuel adulteration using terahertz spectrum. Sens. Bio-Sens Res. 36(1), 100485–100498 (2022)

Article  Google Scholar 

D. Patra, A.K. Mishra, Effect of sample geometry on synchronous fluorimetric analysis of petrol, diesel, kerosene and their mixtures at higher concentration. Analyst 125(8), 1383–1386 (2000)

Article  ADS  Google Scholar 

M.A. Habib, M.S. Anower, L.F. Abdulrazak, M.S. Reza, Hollow core photonic crystal fiber for chemical identification in terahertz regime. Opt. Fiber Technol. 52(5), 101933–1011001 (2019)

Article  Google Scholar 

M.S. Hossain, S. Sen, Design and performance improvement of optical chemical sensor based photonic crystal fiber (PCF) in the terahertz (THz) wave propagation. SILICON 34(5), 987–1005 (2020)

Google Scholar 

M. Abdullah-Al-Shafi, S. Sen, Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime. Sens. Bio-Sens. Res. 29(3), 100372–100388 (2020)

Article  Google Scholar 

S. Sen, M. Abdullah-Al-Shafi, M.A. Kabir, Hexagonal photonic crystal Fiber (H-PCF) based optical sensor with high relative sensitivity and low confinement loss for terahertz (THz) regime. Sens. Bio-Sens. Res. 30(6), 100377–100387 (2020)

Article  Google Scholar 

A.A.M. Bulbul, H. Rahaman, S. Biswas, M.B. Hossain, A. Al Nahid, Design and numerical analysis of a PCF-based bio-sensor for breast cancer cell detection in the THz regime. Sens. Bio-Sens. Res. 30(5), 100388–100398 (2020)

Article  Google Scholar 

M.B. Hossain, E. Podder, A.A.M. Bulbul, H.S. Mondal, Bane chemicals detection through photonic crystal fiber in THz regime. Opt. Fiber Technol. 54(1), 345–355 (2020)

Google Scholar 

I.K. Yakasai, P.E. Abas, F. Begum, Proposal of novel photonic crystal fibre for sensing adulterated petrol and diesel with kerosene in terahertz frequencies. IET Optoelectron. 14(5), 319–326 (2020)

Article  Google Scholar 

A.A.M. Bulbul, A.Z. Kouzani, M.A.P. Mahmud, A. Al Nahid, Design and numerical analysis of a novel rectangular PCF (R-PCF)-based biochemical sensor (BCS) in the THz regime. Int. J. Optoelectron.Optoelectron. 45(2), 65–74 (2021)

Google Scholar 

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