01 |
H. Bangar, K. I. A. Khan, A. Kumar, N. Chowdhury, P. K. Muduli, and P. K. Muduli, "Large spin Hall conductivity in epitaxial thin films of kagome antiferromagnet Mn3Sn at room temperature", Advanced Quantum Technologies 6, 2200115 (2022).
Mentor: Dr.Pranaba Kishor Muduli
Fellow: Niru Chowdhury
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03 |
Silicene: an excellent material for flexible electronics, S. Sahoo, A. Sinha, N. A. Koshi, S-C. Lee, S. Bhattacharjee and B Muralidharan, J. Phys. D: Appl. Phys., 55, 425301, (2022)
Mentor: Prof.Bhaskaran Muralidharan
Fellow: Niru Chowdhury
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04 |
Time like correlations and quantum tensor product structure; S. Sen, E. P. Lobo, R. K. Patra, S. G. Naik, A. D. Bhowmik, M. Alimuddin, and M. Banik; Phys. Rev. A 106, 062406 (2022)
Time like correlations and quantum tensor product structure; S. Sen, E. P. Lobo, R. K. Patra, S. G. Naik, A. D. Bhowmik, M. Alimuddin, and M. Banik; Phys. Rev. A 106, 062406 (2022)
Thermodynamic Signatures of Genuinely Multipartite Entanglement; S. Puliyil, M. Banik, and M. Alimuddin; Phys. Rev. Lett. 129, 070601 (2022)
Certifying beyond quantumness of locally quantum no-signalling theories through quantum input Bell test; E. P. Lobo, S. G. Naik, S. Sen, R. K. Patra, M. Banik, and M. Alimuddin; Phys. Rev. A Lett. 106, L040201 (2022)
Exploring superadditivity of coherent information of noisy quantum channels through genetic algorithms; G. L. Sidhardh, M. Alimuddin, and M. Banik; Phys. Rev. A 106, 012432 (2022)
Composition of Multipartite Quantum Systems: Perspective from Timelike Paradigm; S. G. Naik, E. P. Lobo, S. Sen, R. K. Patra, M. Alimuddin, T. Guha, S. S. Bhattacharya, and M. Banik; Phys. Rev. Lett. 128, 140401 (2022)
Local quantum state marking; S. Sen, E. P. Lobo, S. G. Naik, R. K. Patra, T. Gupta, S. B. Ghosh, S. Saha, M. Alimuddin, T. Guha, S. S. Bhattacharya, and M. Banik; Phys. Rev. A 105, 032407 (2022)
Self-testing quantum states via nonmaximal violation in Hardy's test of nonlocality; A. Rai, M. Pivoluska, S. Sasmal, M. Banik, S. Ghosh, and M. Plesch; Phys. Rev. A 105, 052227 (2022). (Work done by PI only)
Principle of information causality rationalizes quantum composition; Phys. Rev. Lett. 130, 110202 (2023 Classical superdense coding and communication advantage of a single quantum; arXiv:2202.06796 [quant-ph]
Advantage of Hardy's Nonlocal Correlation in Reverse Zero-Error Channel Coding; arXiv:2303.06848 [quant-ph] (Communicated in Phys. Rev. Lett.).
Experimental Verification of Many-Body Entanglement Using Thermodynamic Quantities; arXiv:2305.15012 [quant-ph] (Communicated in Phys. Rev. Lett.)
Self-testing quantum states via nonmaximal violation in Hardy's test of nonlocality; Phys. Rev. A 105, 052227 (2022)
Distilling nonlocality in quantum correlations; Phys. Rev. Lett. 130, 220201 (2023)
Quantum vs classical: identifying the value of a random variable unambiguously; arXiv:2211.09194 [quant-ph]
Bipartite polygon models: entanglement classes and their nonlocal behaviour; arXiv:2205.05415 [quant-ph].
Mentor: Dr. Manik Banik
Fellow: Mr. Mir Allimuddin
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