1. Review Paper on New Technology Based Nanoscale Transistor;Talukdar B.;Adv. Mater. Sci. Eng. An Int. J.
2. R. S. Williams , "What's Next? [The end of Moore's law]," Comput. Sci. Eng ., 2017 , doi: 10.1109/mcse.2017.31. 10.1109/mcse.2017.31 R. S. Williams, "What's Next? [The end of Moore's law]," Comput. Sci. Eng., 2017, doi: 10.1109/mcse.2017.31.
3. S. Petrenko , "Limitations of Von Neumann Architecture," in Big Data Technologies for Monitoring of Computer Security : A Case Study of the Russian Federation , 2018 . S. Petrenko, "Limitations of Von Neumann Architecture," in Big Data Technologies for Monitoring of Computer Security: A Case Study of the Russian Federation, 2018.
4. K. Guo , S. Han , S. Yao , Y. Wang , Y. Xie , and H. Yang , " Software-Hardware Codesign for Efficient Neural Network Acceleration," IEEE Micro . 2017 , doi: 10.1109/MM.2017.39. 10.1109/MM.2017.39 K. Guo, S. Han, S. Yao, Y. Wang, Y. Xie, and H. Yang, "Software-Hardware Codesign for Efficient Neural Network Acceleration," IEEE Micro. 2017, doi: 10.1109/MM.2017.39.
5. T. S. Humble , A. McCaskey , D. I. Lyakh , M. Gowrishankar , A. Frisch , and T. Monz , " Quantum Computers for High-Performance Computing," IEEE Micro . 2021 , doi: 10.1109/MM.2021.3099140. 10.1109/MM.2021.3099140 T. S. Humble, A. McCaskey, D. I. Lyakh, M. Gowrishankar, A. Frisch, and T. Monz, "Quantum Computers for High-Performance Computing," IEEE Micro. 2021, doi: 10.1109/MM.2021.3099140.