Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Md. Ibadul Islam is active.

Publication


Featured researches published by Md. Ibadul Islam.


Applied Optics | 2017

Ultrahigh birefringence, ultralow material loss porous core single-mode fiber for terahertz wave guidance

Kawsar Ahmed; Sawrab Chowdhury; Bikash Kumar Paul; Md. Shadidul Islam; Shuvo Sen; Md. Ibadul Islam; Sayed Asaduzzaman

In this paper, a novel polarization-maintaining single-mode photonic crystal fiber (PCF) has been suggested for terahertz (THz) transmission applications. The reported PCF has five layers of hexagonal cladding with two layers of porous core. The cladding and core territory of the PCF are constituted by circular and elliptical air cavities, accordingly acting as a dielectric medium. Different geometrical parameters of the proposed PCF including pitches and diameters of circular air holes with the major and minor axes of elliptical air cavities being varied with the optimized structure. Various effects on the proposed PCF such as eccentricity and porosity effects are also carefully investigated. The numerical process is investigated by one of the most popular methods, the finite element method (FEM). All numerical computational results have revealed the ultrahigh birefringence in the order of 1.19×10-02 as well as the ultralow bulk absorption material loss of 0.0689  cm-1 at the 1 THz activation frequency. Besides, the V-parameter is also investigated for checking the proposed fiber modality. The proposed single-mode porous core hexagonal PCF is expected to be useful for convenient broadband transmission and numerous applications in the areas of THz technology.


Data in Brief | 2017

Dataset on photonic crystal fiber based chemical sensor

Kawsar Ahmed; Bikash Kumar Paul; Sawrab Chowdhury; Md. Shadidul Islam; Shuvo Sen; Md. Ibadul Islam; Sayed Asaduzzaman; Ali Newaz Bahar; Mohammad Badrul Alam Miah

This article represents the data set of micro porous core photonic crystal fiber based chemical sensor. The suggested structure is folded cladding porous shaped with circular air hole. Here is investigated four distinctive parameters including relative sensitivity, confinement loss, numerical aperture (NA), and effective area (Aeff). The numerical outcomes are computed over the E+S+C+L+U communication band. The useable sensed chemicals are methanol, ethanol, propanol, butanol, and pentanol whose are lies in the alcohol series (Paul et al., 2017) [1]. Furthermore, V-parameter (V), Marcuse spot size (MSS), and beam divergence (BD) are also investigated rigorously. All examined results have been obtained using finite element method based simulation software COMSOL Multiphysics 4.2 versions with anisotropic circular perfectly matched layer (A-CPML). The proposed PCF shows the high NA from 0.35 to 0.36; the low CL from ~10–11 to ~10−7 dB/m; the high Aeff from 5.50 to 5.66 µm2; the MSS from 1.0 to 1.08 µm; the BD from 0.43 to 0.46 rad at the controlling wavelength λ = 1.55 µm for employing alcohol series respectively.


Journal of optical communications | 2017

Proposed Square Lattice Photonic Crystal Fiber for Extremely High Nonlinearity, Birefringence and Ultra-High Negative Dispersion Compensation

Md. Ibadul Islam; Kawsar Ahmed; Shuvo Sen; Bikash Kumar Paul; Md. Shadidul Islam; Sawrab Chowdhury; Md. Rabiul Hasan; Muhammad Shahin Uddin; Sayed Asaduzzaman; Ali Newaz Bahar

Abstract A photonic crystal fiber in square lattice architecture is numerically investigated and proposed for broadband dispersion compensation in optical transmission system. Simulation results reveal that it is possible to obtain an ultra-high negative dispersion of about −571.7 to −1889.7 (ps/nm.km) in the wavelength range of 1340 nm to 1640 nm. Experimentally it is demonstrated that the design fiber covers a high birefringence of order 4.74×10‒3 at the wavelength of 1550 nm. Here, numerical investigation of guiding properties and geometrical properties of the proposed PCF are conducted using the finite element method (FEM) with perfectly match layers. Moreover, it is established more firmly that the proposed fiber successfully compensates the chromatic dispersion of standard single mode in entire band of interest. Our result is attractive due to successfully achieve ultra-high negative dispersion that is more promisor than the prior best results.


Optical Review | 2017

Ultra-high negative dispersion compensating square lattice based single mode photonic crystal fiber with high nonlinearity

Md. Ibadul Islam; Maksuda Khatun; Kawsar Ahmed


alexandria engineering journal | 2017

Liquid-infiltrated photonic crystal fiber for sensing purpose: Design and analysis

Md. Shadidul Islam; Bikash Kumar Paul; Kawsar Ahmed; Sayed Asaduzzaman; Md. Ibadul Islam; Sawrab Chowdhury; Shuvo Sen; Ali Newaz Bahar


Sensing and bio-sensing research | 2017

Design of single mode spiral photonic crystal fiber for gas sensing applications

Md. Ibadul Islam; Kawsar Ahmed; Sayed Asaduzzaman; Bikash Kumar Paul; Touhid Bhuiyan; Shuvo Sen; Md. Shadidul Islam; Sawrab Chowdhury


Photonic Sensors | 2017

Design and optimization of photonic crystal fiber based sensor for gas condensate and air pollution monitoring

Md. Ibadul Islam; Kawsar Ahmed; Shuvo Sen; Sawrab Chowdhury; Bikash Kumar Paul; Md. Shadidul Islam; Mohammad Badrul Alam Miah; Sayed Asaduzzaman


Optik | 2019

Analysis of optical sensitivity of analytes in aqua solutions

M. Suganthy; Bikash Kumar Paul; Kawsar Ahmed; Md. Ibadul Islam; Md. Asaduzzaman Jabin; Ali Newaz Bahar; M.S. Mani Rajan


Ukrainian Journal of Physics | 2017

Design and Analysis of Single-Mode PCF in Optical Communication Covering E to L Bands with Ultra-High Negative Dispersion

Md. Ibadul Islam; Maksuda Khatun; Kawsar Ahmed; Sayed Asaduzzaman; Bikash Kumar Paul; Md. Shadidul Islam; Sawrab Chowdhury; Shuvo Sen; Mohammad Badrul Alam Miah; Ali Newaz Bahar


Iet Optoelectronics | 2017

Design of a single-mode photonic crystal fibre with ultra-low material loss and large effective mode area in THz regime

Kawsar Ahmed; Bikash Kumar Paul; Sawrab Chowdhury; Shuvo Sen; Md. Ibadul Islam; Md. Shadidul Islam; Md. Rabiul Hasan; Sayed Asaduzzaman

Collaboration


Dive into the Md. Ibadul Islam's collaboration.

Top Co-Authors

Avatar

Kawsar Ahmed

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Bikash Kumar Paul

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Md. Shadidul Islam

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Sawrab Chowdhury

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Sayed Asaduzzaman

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Shuvo Sen

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Ali Newaz Bahar

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Md. Rabiul Hasan

Rajshahi University of Engineering

View shared research outputs
Top Co-Authors

Avatar

Mohammad Badrul Alam Miah

Mawlana Bhashani Science and Technology University

View shared research outputs
Top Co-Authors

Avatar

Maksuda Khatun

Mawlana Bhashani Science and Technology University

View shared research outputs
Researchain Logo
Decentralizing Knowledge