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Md. Abdullah-Al-Shafi
Md. Abdullah-Al-Shafi
Institute of Information Technology, University of Dhaka
在 cse.uoda.edu.bd 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
A Review on Reversible Logic Gates and it’s QCA Implementation
MA Shafi, MS Islam, AN Bahar
International Journal of Computer Applications 128 (2), 27-34, 2015
732015
Optimized design and performance analysis of novel comparator and full adder in nanoscale
M Abdullah-Al-Shafi, AN Bahar
Cogent Engineering 3 (1), 1237864, 2016
642016
Zeonex based decagonal photonic crystal fiber (D-PCF) in the terahertz (THz) band for chemical sensing applications
S Sen, M Abdullah-Al-Shafi, AS Sikder, MS Hossain, MM Azad
Sensing and Bio-Sensing Research 31, 100393, 2021
532021
An Architecture of 2-Dimensional 4-Dot 2-Electron QCA Full Adder and Subtractor with Energy Dissipation Study
M Abdullah-Al-Shafi, AN Bahar
Active and Passive Electronic Components, 2018
472018
Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
M Abdullah-Al-Shafi, S Sen
Sensing and Bio-Sensing Research 29, 100372, 2020
422020
Novel binary to gray code converters in QCA with power dissipation analysis
M Abdullah-Al-Shafi, AN Bahar
International journal of multimedia and ubiquitous engineering 11 (8), 379-396, 2016
392016
Designing efficient QCA even parity generator circuits with power dissipation analysis
AN Bahar, M Shahin Uddin, M Abdullah-Al-Shafi, ...
Alexandria Engineering Journal, 2017
372017
Average output polarization dataset for signifying the temperature influence for QCA designed reversible logic circuits
M Abdullah-Al-Shafi, AN Bahar, MMR Bhuiyan, SM Shamim, K Ahmed
Data in brief 19, 42-48, 2018
342018
Hexagonal photonic crystal Fiber (H-PCF) based optical sensor with high relative sensitivity and low confinement loss for terahertz (THz) regime
S Sen, M Abdullah-Al-Shafi, MA Kabir
Sensing and Bio-Sensing Research 30, 100377, 2020
332020
Designing single layer counter in quantum-dot cellular automata with energy dissipation analysis
M Abdullah-Al-Shafi, AN Bahar, MA Habib, MMR Bhuiyan, F Ahmad, ...
Ain Shams Engineering Journal, 2017
322017
Implementation of Binary to Gray Code Converters in Quantum Dot Cellular Automata
S ISLAM, M ABDULLAH-AL-SHAFI, ALIN BAHAR
Journal on Today's Ideas - Tomorrow's Technologies 3 (2), 145-160, 2015
312015
Efficient design of Feynman and Toffoli gate in quantum dot cellular automata (QCA) with energy dissipation analysis
PK Biswas, AN Bahar, MA Habib, M Abdullah-Al-Shafi
Nanoscience and Nanotechnology 7 (2), 27-33, 2017
262017
QCA: An Effective Approach to Implement Logic Circuit in Nanoscale
M Abdullah-Al- Shafi, AN Bahar
5th International Conference on Informatics, Electronics & Vision (ICIEV …, 2016
232016
Toward efficient design of flip-flops in quantum-dot cellular automata with power dissipation analysis
AN Bahar, R Laajimi, M Abdullah-Al-Shafi, K Ahmed
International Journal of Theoretical Physics 57, 3419-3428, 2018
212018
A quantitative approach of reversible logic gates in QCA
A Al Shafi, AN Bahar, MS Islam
Journal of Communications Technology, Electronics and Computer Science 3, 22-26, 2015
212015
A new approach of presenting universal reversible gate in nanoscale
MS Islam, M Abdullah-Al-Shafi, AN Bahar
International Journal of Computer Applications 134 (7), 1-4, 2016
202016
A new approach of presenting binary to grey and grey to binary code converter in majority voter-based QCA nanocomputing
M Abdullah-Al-Shafi, AN Bahar
Journal of Computational and Theoretical Nanoscience 14 (5), 2416-2421, 2017
182017
Power analysis dataset for QCA based multiplexer circuits
M Abdullah-Al-Shafi, AN Bahar, PZ Ahmad, F Ahmad, ...
Data in Brief 11, 593–596, 2017
182017
Performance evaluation of efficient combinational logic design using nanomaterial electronics
M Abdullah-Al-Shafi, AN Bahar, F Ahmad, K Ahmed
Cogent Engineering 4 (1), 1349539, 2017
182017
Analysis and modeling of sequential circuits in QCA nano computing: RAM and SISO register study
M Abdullah-Al-Shafi, R Ziaur
Solid State Electronics Letters 1 (2), 73-83, 2019
172019
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