1. T. Sarkar, Y. Tiwari, and V. S. Poonia, "Impact of AC Magnetic Field on Decoherence of Quantum Dot based Single Spin Qubit System", arXiv preprint arXiv:2201.06121, 2022.
2. R. Jain, V. S. Poonia, K. Saha, D. Saha, and S. Ganguly, "The avian compass can be sensitive even without sustained electron spin coherence", Proceedings of the Royal Society A 477, no. 2250, 20200778, 2021.
3. Y. Tiwari, and V. S. Poonia, "Universal Quantum Gates based on Quantum Dots", arXiv preprint arXiv:2105.07021, 2021.
4. A. Chakraborty, V. S. Poonia, "Quantum photocell based on GaN quantum dots", arXiv preprint arXiv:2012.13559, 2020.
5. S. Gangopadhyay, V. S. Poonia, D. Aggarwal, and R. Parekh, "Generalized Boolean Functions and Quantum Circuits on IBM-Q", presented in 10th International Conference on Computing, Communication and Networking Technologies (ICCCNT) (pp. 1-6), IEEE, 2019.
6. Vishvendra Singh Poonia, Dipankar Saha, and Swaroop Ganguly, "Quantum Biomimetic Modeling of Diamond NV- Center Spin Dynamics", IEEE Transactions on Nanotechnology, vol. 17, no. 2, pp. 231-237, 2018.
7. Suryakant Mishra, Vishvendra S. Poonia, Claudio Fontanesi, Ron Naaman, Aaron M. Fleming, and Cynthia J. Burrows. "Effect of Oxidative Damage on Charge and Spin Transport in DNA." Journal of the American Chemical Society 141, no. 1 (2018): 123-126.
8. Vishvendra Singh Poonia, Kiran Kondabagil, Dipankar Saha, and Swaroop Ganguly, "Functional window of the avian compass", Physical Review E, 95.5, 002400, 2017.
9. Vishvendra Singh Poonia, Dipankar Saha, and Swaroop Ganguly, "State transitions and decoherence in the avian compass", Physical Review E, 91.5, 052709, 2015.
10. Ashwani K., Vishvendra K., Sarvesh Agarwal, Anirban Basak, Neeraj Jain, Anand Bulusu, and S. K. Manhas. "Nitrogen-Terminated Semiconducting Zigzag GNR FET With Negative Differential Resistance", IEEE Transactions on Nanotechnology 13, no. 1, 16-22, 2014.