15
collaborators
2024–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
9 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Quantum-informed learning of genuine network nonlocality beyond idealized resources | TQC 2026 | ▸Anantha Krishnan Sunilkumar, Anil Shaji |
We address the characterization of genuine network nonlocal correlations, which remain highly challenging due to the non-convex nature of local correlations even in the distinct triangle scenario with three sources and three observers implementing one four-outcome measurement. We introduce a scalable causally inferred Bayesian learning framework called the Layered Local Hidden Variable Neural Network (Layered LHV-Net) to learn the local statistics in network Bell tests. Using this framework, we identify a new class of measurement settings that exhibit the most robust nonlocality compared to previously known measurements. Remarkably, our study shows that the nonlocality measure becomes non-zero only when the visibility of the shared Bell state exceeds 0.94, surpassing previously reported noise robustness thresholds. Further, we examine correlations where shared states originate from dissimilar sources, finding that nonlocality is observed only if all the involved states are sufficiently entangled. Finally, we analyze a scenario in which the sources are allowed to share classical randomness. We find that nonlocal correlations persist even when the sources share up to 3 units of randomness, whereas a local model reproducing the quantum correlations only becomes possible when 4 units of shared randomness are available. Apart from the results, the work succeeds in showing that quantum-informed machine learning approaches as foundational frameworks can greatly benefit the field of quantum information. |
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| Entangled states are not always useful for single shot distinguishability of unitaries | TQC 2025 | Satyaki Manna, Anandamay Das Bhowmik |
| Single-shot distinguishability and antidistinguishability of quantum measurements | TQC 2025 | Satyaki Manna, Sneha Suresh, Manan Singh Kachhawaha |
| Rigidity of Kochen-Specker Sets Enables Self-Testing of Supersinglets | TQC 2025 | Adán Cabello |
| Minimal no-go theorems for maximally psi-epistemic models | TQC 2025 | Sagnik Ray |
| Characterizing the set of Classical Correlations and Quantum Advantage under (Anti-)Distinguishability constraints in Multipartite Communication | TQC 2025 | Ankush Pandit, Soumyabrata Hazra, Satyaki Manna, Anubhav Chaturvedi |
| Communication complexity scenarios lead to robust self-testing of n-party GHZ basis measurements | TQC 2025 | Barnik Nath Bhaumik, Sagnik Ray |
| Learning genuine network nonlocality for non-ideal scenarios: A domain-informed machine learning approach | TQC 2025 | Anantha Krishnan Sunilkumar, Anil Shaji |
| Quantum contextuality provides communication complexity advantage | QIP 2024 | Shashank Gupta, Zhen-Peng Xu, Adán Cabello, Archan Majumdar |
Collaborators
| Co-author | Joint talks |
|---|---|
| Satyaki Manna | 3 |
| Adán Cabello | 2 |
| Anantha Krishnan Sunilkumar | 2 |
| Anil Shaji | 2 |
| Sagnik Ray | 2 |
| Anandamay Das Bhowmik | 1 |
| Ankush Pandit | 1 |
| Anubhav Chaturvedi | 1 |
| Archan Majumdar | 1 |
| Barnik Nath Bhaumik | 1 |
| Manan Singh Kachhawaha | 1 |
| Shashank Gupta | 1 |
| Sneha Suresh | 1 |
| Soumyabrata Hazra | 1 |
| Zhen-Peng Xu | 1 |