Elements of quantum computation and quantum communication A Pathak CRC Press, 2013 | 223 | 2013 |
Protocols of quantum key agreement solely using Bell states and Bell measurement C Shukla, N Alam, A Pathak Quantum information processing 13 (11), 2391-2405, 2014 | 127 | 2014 |
Semi-quantum communication: protocols for key agreement, controlled secure direct communication and dialogue C Shukla, K Thapliyal, A Pathak Quantum Information Processing 16, 1-19, 2017 | 115 | 2017 |
Quantum cryptography: Key distribution and beyond A Pathak, R Srikanth arXiv preprint arXiv:1802.05517, 2018 | 114 | 2018 |
Controlled bidirectional remote state preparation in noisy environment: a generalized view V Sharma, C Shukla, S Banerjee, A Pathak Quantum Information Processing 14, 3441-3464, 2015 | 100 | 2015 |
Bidirectional controlled teleportation by using 5-qubit states: a generalized view C Shukla, A Banerjee, A Pathak International Journal of Theoretical Physics 52, 3790-3796, 2013 | 98 | 2013 |
Design and experimental realization of an optimal scheme for teleportation of an n-qubit quantum state M Sisodia, A Shukla, K Thapliyal, A Pathak Quantum Information Processing 16, 1-19, 2017 | 97 | 2017 |
Orthogonal-state-based and semi-quantum protocols for quantum private comparison in noisy environment K Thapliyal, RD Sharma, A Pathak International Journal of Quantum Information 16 (05), 1850047, 2018 | 92 | 2018 |
Maximally efficient protocols for direct secure quantum communication A Banerjee, A Pathak Physics Letters A 376 (45), 2944-2950, 2012 | 89 | 2012 |
Higher-order nonclassicalities in a codirectional nonlinear optical coupler: Quantum entanglement, squeezing, and antibunching K Thapliyal, A Pathak, B Sen, J Peřina Physical Review A 90 (1), 013808, 2014 | 80 | 2014 |
Statistical mixtures of states can be more quantum than their superpositions: Comparison of nonclassicality measures for single-qubit states A Miranowicz, K Bartkiewicz, A Pathak, J Peřina Jr, YN Chen, F Nori Physical Review A 91 (4), 042309, 2015 | 77 | 2015 |
Experimental realization of nondestructive discrimination of Bell states using a five-qubit quantum computer M Sisodia, A Shukla, A Pathak Physics Letters A 381 (46), 3860-3874, 2017 | 76 | 2017 |
Applications of quantum cryptographic switch: various tasks related to controlled quantum communication can be performed using Bell states and permutation of particles K Thapliyal, A Pathak Quantum Information Processing 14, 2599-2616, 2015 | 73 | 2015 |
Hierarchical quantum communication C Shukla, A Pathak Physics Letters A 377 (19-20), 1337-1344, 2013 | 67 | 2013 |
Control of higher order antibunching A Pathak, ME Garcia Applied Physics B 84, 479-484, 2006 | 67 | 2006 |
A comparative study of protocols for secure quantum communication under noisy environment: single-qubit-based protocols versus entangled-state-based protocols V Sharma, K Thapliyal, A Pathak, S Banerjee Quantum Information Processing 15, 4681-4710, 2016 | 61 | 2016 |
Two-step orthogonal-state-based protocol of quantum secure direct communication with the help of order-rearrangement technique P Yadav, R Srikanth, A Pathak Quantum information processing 13, 2731-2743, 2014 | 60 | 2014 |
On the group-theoretic structure of a class of quantum dialogue protocols C Shukla, V Kothari, A Banerjee, A Pathak Physics Letters A 377 (7), 518-527, 2013 | 56 | 2013 |
Hierarchical joint remote state preparation in noisy environment C Shukla, K Thapliyal, A Pathak Quantum Information Processing 16, 1-32, 2017 | 54 | 2017 |
Protocols for quantum binary voting K Thapliyal, RD Sharma, A Pathak International Journal of Quantum Information 15 (01), 1750007, 2017 | 52 | 2017 |