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Hollow-core anti-resonant fiber plasmonic sensor: Physics, design, and simulations
Next-generation sensing technologies require high-performance sensors that can offer ultra-low loss while achieving enhanced …
Mohammad Al Mahfuz
,
Abdullah Al Mamun
,
Md Selim Habib
Project
Project
High amplitude sensitivity anti-resonant solid-core fiber plasmonic sensor for ultra-low refractive index detection
Accurate detection of ultra-low refractive indices (RIs) with high amplitude sensitivity (AS) is crucial for many applications, …
M. Al Mahfuz
,
A. Al Mamun
,
P. Kante
,
Md Selim Habib
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Project
DOI
link
Accurate prediction of geometrical parameters of an ultra-broadband metamaterial absorber using machine learning
In this paper, we systematically demonstrate the design and analysis of a new type of ultra-broadband tunable metamaterial perfect …
M. Rezwan Ahmed
,
O. Jyoti
,
Pritu P. Sarkar
,
M. Abdul Matin
,
Md Selim Habib
,
M. Samiul Habib
Project
Ultra-sensitive visible-IR range fiber based plasmonic sensor: a finite-element analysis and deep learning approach for RI prediction
In this paper, a relatively simple and ultra-sensitive Photonic crystal fiber (PCF) based surface plasmon resonance (SPR) sensor is …
M. Al Mahfuz
,
S. Afroz
,
A. Rahman
,
M. Azad Hossain
,
M. Anwar Hossain
,
Md Selim Habib
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Project
DOI
link
Single-polarization and single-mode hybrid hollow-core anti-resonant fiber design at 2 μm
In this paper, to the best of our knowledge, a new type of hollow-core anti-resonant fiber (HC-ARF) design using hybrid …
H. Herring
,
Md Selim Habib
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Project
DOI
link
Ultra-sensitive visible-IR range fiber based plasmonic sensor: a finite-element analysis and deep learning approach for RI prediction
The lack of access to broadband services and speeds that allows urban and rural populations to meet the minimum requirements of today’s …
R. Sanchez-Arias
,
L. Jaimes
,
S. Taj
,
Md Selim Habib
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DOI
link
Genetic-algorithm-based design of large-mode-area all-solid anti-resonant fiber with normal dispersion and single-mode operation in the 2 μm wavelength region
Recent years have witnessed much progress in the development of fiber lasers in the 2 μm region. Yet, to date, their power levels are …
X. Hu
,
S. Gausmann
,
Md Selim Habib
,
M. Abu Sufian
,
A. Schülzgen
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Project
DOI
link
Tunable dispersion and supercontinuum generation in disordered glass-air anderson localization fiber
In this paper, we discuss chromatic dispersion properties of transverse Anderson localization optical fiber (TALOF) and their …
S. Gausmann
,
X. Hu
,
J. Zhao
,
Md Selim Habib
,
H. Cheng
,
J. E. Lopez
,
X. Yu
,
R. Amuezcua-Correa
,
A. Schülzgen
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Project
Project
Project
DOI
link
Random misalignment and anisotropic deformation of the nested cladding elements in hollow-core anti-resonant fibers
Hollow-core anti-resonant fibers (HC-ARFs) are en route to compete with and surpass the transmission performance of standard …
M. Petry
,
R. Amuezcua-Correa
,
Md Selim Habib
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Project
DOI
link
Linearity and nonlinearity in hollow-core antiresonant fibersensors in the terahertz regime
In nonlinear optics, a major challenge is to maximize the interaction between the light from laser sources and low-density media such …
J. Sultana
,
M. Saiful Islam
,
Md Selim Habib
,
M. Kaushik
,
A. Dinovitser
,
B. W-H Ng
,
D. Abbott
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Project
DOI
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