AP
Amit Kumar Pal
Indian Institute of Technology Palakkad, University of Warsaw, University of Calcutta, Swansea University
About
Currently an Associate Professor in Physics at the Indian Institute of Technology Palakkad. I obtained my PhD degree from the University of Calcutta. I was a post-doctoral fellow at (a) Harish-Chandra Research Institute, Prayagraj, India, (b) Swansea University, UK, and (c) University of Warsaw, Poland, before joining IIT Palakkad. My area of research is quantum information science and technologies.
Employment
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Indian Institute of Technology Palakkad Associate Professor2023 - Present
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Indian Institute of Technology Palakkad Assistant Professor2019 - 2023
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University of Warsaw Post-Doctoral Fellow2019 - 2019
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Swansea University Postdoctoral Fellow / Research Officer2016 - 2019
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Harish-Chandra Research Institute Post-Doctoral Fellow2014 - 2016
Education
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University of Calcutta Ph.D. in Theoretical Physics2009 - 2014
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University of Calcutta M.Sc. in Physics2006 - 2008
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University of Calcutta B.Sc. in Physics (Hons.)2003 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Block entanglement bounds distribution of regionally localized entanglement Save
- Developing a universal logical state-purification strategy Save
- Scaling of entanglement entropy and correlations in the variable-range extended Ising model Save
- Scalable and deterministic Greenberger-Horne-Zeilinger state generation via graph-state-assisted measurements Save
- Bridging the daemonic gap en route to charge multimode batteries via a single auxiliary Save
- Simultaneous cooling of qubits via a quantum absorption refrigerator and beyond Save
- Recovery of resources through sequential noisy measurements Save
- Entanglement and fidelity across quantum phase transitions in locally perturbed topological codes with open boundaries Save
- Logarithmic growth of peripheral entanglement concentrated via noisy measurements in a star network of spins Save
- Estimating correlations and entanglement in the two-dimensional Heisenberg model in the strong-rung-coupling limit Save