A Novel Approach for Spectroscopic Chemical Identification Using Photonic Crystal Fiber in the Terahertz Regime MS Islam, J Sultana, K Ahmed, MR Islam, A Dinovitser, BWH Ng, D Abbott IEEE Sensors Journal 18 (2), 575-582, 2018 | 271 | 2018 |
Tunable localized surface plasmon graphene metasurface for multiband superabsorption and terahertz sensing MS Islam, J Sultana, M Biabanifard, Z Vafapour, MJ Nine, A Dinovitser, ... Carbon 158, 559-567, 2020 | 255 | 2020 |
Terahertz Detection of Alcohol Using Photonic Crystal Fiber Sensor J Sultana, MS Islam, K Ahmed, A Dinovitser, BWH Ng, D Abbott Applied Optics 57 (12), 2018 | 198 | 2018 |
Dual-polarized highly sensitive plasmonic sensor in the visible to near-IR spectrum MS Islam, J Sultana, AA Rifat, R Ahmed, A Dinovitser, BWH Ng, ... Optics express 26 (23), 30347-30361, 2018 | 172 | 2018 |
Terahertz sensing in a hollow core photonic crystal fiber MS Islam, J Sultana, AA Rifat, A Dinovitser, BWH Ng, D Abbott IEEE Sensors Journal 18 (10), 4073-4080, 2018 | 156 | 2018 |
A Hi-Bi ultra-sensitive surface plasmon resonance fiber sensor MS Islam, CMB Cordeiro, J Sultana, RA Aoni, S Feng, R Ahmed, ... IEEE access 7, 79085-79094, 2019 | 152 | 2019 |
Terahertz optical fibers MS Islam, CMB Cordeiro, MAR Franco, J Sultana, ALS Cruz, D Abbott Optics express 28 (11), 16089-16117, 2020 | 137 | 2020 |
Extremely low material loss and dispersion flattened TOPAS based circular porous fiber for long distance terahertz wave transmission MS Islam, J Sultana, S Rana, MR Islam, M Faisal, SF Kaijage, D Abbott Optical Fiber Technology 34, 6-11, 2017 | 125 | 2017 |
Highly birefringent elliptical core photonic crystal fiber for terahertz application J Sultana, MS Islam, M Faisal, MR Islam, BWH Ng, ... Optics Communications 407, 92-96, 2018 | 95 | 2018 |
Porous core photonic crystal fibre for ultra‐low material loss in THz regime MS Islam, S Rana, MR Islam, M Faisal, H Rahman, J Sultana IET Communications 10 (16), 2179-2183, 2016 | 90 | 2016 |
Zeonex-based asymmetrical terahertz photonic crystal fiber for multichannel communication and polarization maintaining applications MS Islam, J Sultana, A Dinovitser, M Faisal, MR Islam, BWH Ng, D Abbott Applied optics 57 (4), 666-672, 2018 | 87 | 2018 |
Sensing of toxic chemicals using polarized photonic crystal fiber in the terahertz regime MS Islam, J Sultana, A Dinovitser, K Ahmed, BWH Ng, D Abbott Optics Communications 426, 341-347, 2018 | 86 | 2018 |
Ultra low-loss hybrid core porous fiber for broadband applications MS Islam, J Sultana, J Atai, D Abbott, S Rana, MR Islam Applied optics 56 (4), 1232-1237, 2017 | 85 | 2017 |
Exposed-core localized surface plasmon resonance biosensor MS Islam, MR Islam, J Sultana, A Dinovitser, BWH Ng, D Abbott JOSA B 36 (8), 2306-2311, 2019 | 75 | 2019 |
Experimental study on glass and polymers: Determining the optimal material for potential use in terahertz technology MS Islam, CMB Cordeiro, MJ Nine, J Sultana, ALS Cruz, A Dinovitser, ... IEEE access 8, 97204-97214, 2020 | 73 | 2020 |
A novel Zeonex based oligoporous-core photonic crystal fiber for polarization preserving terahertz applications MS Islam, J Sultana, A Dinovitser, BWH Ng, D Abbott Optics Communications 413, 242-248, 2018 | 71 | 2018 |
High numerical aperture, highly birefringent novel photonic crystal fibre for medical imaging applications J Sultana, MS Islam, MR Islam, D Abbott Electronics Letters 54 (2), 61-62, 2018 | 68 | 2018 |
Localized surface plasmon resonance biosensor: an improved technique for SERS response intensification MS Islam, J Sultana, R Ahmmed Aoni, MS Habib, A Dinovitser, BWH Ng, ... Optics letters 44 (5), 1134-1137, 2019 | 61 | 2019 |
Extremely low-loss, dispersion flattened porous-core photonic crystal fiber for terahertz regime S Islam, MR Islam, M Faisal, ASMS Arefin, H Rahman, J Sultana, S Rana Optical Engineering 55 (7), 076117-076117, 2016 | 50 | 2016 |
Application of machine learning based algorithm for prediction of malnutrition among women in Bangladesh MM Islam, MJ Rahman, MM Islam, DC Roy, NAMF Ahmed, S Hussain, ... International Journal of Cognitive Computing in Engineering 3, 46-57, 2022 | 48* | 2022 |