Arun Kumar Pati
Also known as: Arun K Pati
Harish-Chandra Research Institute, Institute of Physics, Bhubaneshwar, BARC
About
Arun Kumar Pati is a Distinguished Professor and Director at Center of Innovation and Research. He was also Head of Center for Quantum Science and Technology at IIIT, Hyderabad. He had spent several years at Harish-Chandra Research Institute (HRI), Allahabad, Institute of Physics, Bhubaneswar and BARC, Mumbai.
Prof. Arun K Pati has made many pioneering contributions in the area of Quantum Computation and Quantum Information. He has been working in the area of Quantum Science, Quantum computing and Quantum information over last 35 years. His seminal contributions include the No-Deletion theorem, No-Hiding theorem, No-Masking theorem, Remote State Preparation, and Stronger Uncertainty Relations. His research papers have been featured in Nature, Science, Scientific American and Nature Asia. For his original and creative contributions he has received many awards. This include the Indian Physical Society Award for Young Scientists, Kolkota (1996), Indian Physics Association Award for Young Physicist of the Year, Mumbai (2000), Samanta Chandra Sekhar Award for the year 2009 from the Orissa Science Academy, India and the Distinguished Alumni award from Berhampur University Odisha. He is an elected Fellow of the Indian Academy of Science, Bangalore and also Fellow of the National Academy of Science, Allahabad. He was a J C Bose National Fellow in 2019. He consistently ranks in the top 2% Scientists in the world by Stanford University. He also figures in the No 1 position as World's Famous Quantum Information scientists.
Employment
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Harish-Chandra Research Institute Professor2011 - 2022
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Institute of Physics, Bhubaneshwar2001 - 2010
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BARC Scientist1989 - 2001
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (880)
- Generalised quantum speed limit for arbitrary time-continuous evolution Save
- Quantum speed limits for information and coherence Save
- Impossibility of cloning of quantum coherence Save
- Superposition of causal order enables quantum advantage in teleportation under very noisy channels Save
- Quantum addition imparts less disorder than mixing and commutes with incoherent channels Save
- Quantum precision thermometry with weak measurements Save
- Distinguishing two preparations for same pure state leads to signalling Save
- Super quantum search algorithm with weak value amplification and postselection Save
- Superposition of causal order enables perfect quantum teleportation with very noisy singlets Save
- Evolution of coherence and non-classicality under global environmental interaction: S. Bhattacharya et al. Save