Observable quantum entanglement due to gravity T Krisnanda, GY Tham, M Paternostro, T Paterek npj Quantun Information 6, 12, 2020 | 142 | 2020 |
Revealing Nonclassicality of Inaccessible Objects T Krisnanda, M Zuppardo, M Paternostro, T Paterek Physical Review Letters 119 (12), 120402, 2017 | 101 | 2017 |
Experimental localisation of quantum entanglement through monitored classical mediator S Pal, P Batra, T Krisnanda, T Paterek, TS Mahesh Quantum 5, 478, 2021 | 50 | 2021 |
Realising and compressing quantum circuits with quantum reservoir computing S Ghosh, T Krisnanda, T Paterek, TCH Liew Communications Physics 4 (1), 105, 2021 | 45 | 2021 |
Quantum neuromorphic computing with reservoir computing networks S Ghosh, K Nakajima, T Krisnanda, K Fujii, TCH Liew Advanced Quantum Technologies 4 (9), 2100053, 2021 | 42 | 2021 |
Probing quantum features of photosynthetic organisms T Krisnanda, C Marletto, V Vedral, M Paternostro, T Paterek npj Quantum Information 4, 60, 2018 | 30* | 2018 |
Creating and concentrating quantum resource states in noisy environments using a quantum neural network T Krisnanda, S Ghosh, T Paterek, TCH Liew Neural Networks 136, 141-151, 2021 | 28 | 2021 |
Superpolynomial quantum enhancement in polaritonic neuromorphic computing H Xu, T Krisnanda, W Verstraelen, TCH Liew, S Ghosh Physical Review B 103 (19), 195302, 2021 | 22 | 2021 |
Distribution of quantum entanglement: Principles and applications T Krisnanda arXiv preprint arXiv:2003.08657, 2020 | 19 | 2020 |
Universal quantum reservoir computing S Ghosh, T Krisnanda, T Paterek, TCH Liew arXiv preprint arXiv:2003.09569, 2020 | 19 | 2020 |
Detecting nondecomposability of time evolution via extreme gain of correlations T Krisnanda, R Ganardi, SY Lee, J Kim, T Paterek Physical Review A 98 (5), 052321, 2018 | 18 | 2018 |
Excessive distribution of quantum entanglement M Zuppardo, T Krisnanda, T Paterek, S Bandyopadhyay, A Banerjee, ... Physical Review A 93 (1), 012305, 2016 | 16 | 2016 |
Quantum neuromorphic approach to efficient sensing of gravity-induced entanglement T Krisnanda, T Paterek, M Paternostro, TCH Liew Physical Review D 107 (8), 086014, 2023 | 9 | 2023 |
Continuous-variable entanglement through central forces: application to gravity between quantum masses A Kumar, T Krisnanda, P Arumugam, T Paterek Quantum 7, 1008, 2023 | 8 | 2023 |
Phase measurement beyond the standard quantum limit using a quantum neuromorphic platform T Krisnanda, S Ghosh, T Paterek, W Laskowski, TCH Liew Physical Review Applied 18 (3), 034011, 2022 | 8 | 2022 |
Nonclassicality of spin structures in condensed matter: An analysis of WY Kon, T Krisnanda, P Sengupta, T Paterek Physical Review B 100 (23), 235103, 2019 | 8 | 2019 |
Observable quantum entanglement due to gravity. npj Quant. Inf T Krisnanda, GY Tham, M Paternostro, T Paterek | 7* | 2020 |
Energy transfer driven brightening of MoS2 by ultrafast polariton relaxation in microcavity MoS2/hBN/WS2 heterostructures Z Hu, T Krisnanda, A Fieramosca, J Zhao, Q Sun, Y Chen, H Liu, Y Luo, ... Nature Communications 15 (1), 1747, 2024 | 6 | 2024 |
Room temperature light‐mediated long‐range coupling of excitons in perovskites T Krisnanda, Q Zhang, K Dini, D Giovanni, TCH Liew, TC Sum Advanced Optical Materials 9 (9), 2001835, 2021 | 6 | 2021 |
Quantum Neuromorphic Computing with Reservoir Computing Networks. Advanced Quantum Technologies, 4 (9) S Ghosh, K Nakajima, T Krisnanda, K Fujii, TCH Liew | 6 | 2021 |