Poulami Nandi

Dr. Poulami Nandi is a postdoctoral fellow at the Indian Institute of Technology Gandhinagar, Gujarat since March 2022. She received her Ph.D. in physics from the Indian Institute of Technology Kanpur (IITK) in April 2022. She earned her master’s in physics from IITK and joined the research group of Prof. Arjun Bagchi in 2017 to pursue her Ph.D. Her doctoral thesis “Carrollian Conformal Symmetry and Holography” focuses on Carrollian conformal and BMS field theories, and their relations with the holographic principle for asymptotically flat spacetimes.

During her Ph.D., Dr. Nandi was awarded two international fellowships: the Fulbright-Nehru Doctoral Fellowship 2019-2020 for nine months to visit the University of California, Davis and the Overseas Visiting Doctoral Fellowship 2018-2019 for 12 months by the Science and Engineering Research Board (SERB), Government of India. She was also affiliated with the Vienna University of Technology (TU Wien), Austria for six months from August 2019 before moving to California in 2020. She was awarded International Travel Support (ITS) by SERB in 2022 to present her work at the prestigious annual conference “Strings” in Vienna. She also received the INSPIRE scholarship from the Department of Science and Technology, Government of India during her undergraduate studies. She has co-authored several publications in international high-impact journals and presented her works through multiple seminars and posters in India and Europe.

The holographic principle is one of our best hopes to understand quantum gravity. One of its most prominent examples is the AdS/CFT correspondence, which is also deeply connected to diverse branches of physics, such as condensed matter, quantum information, and optics. During her Fulbright-Nehru Postdoctoral Research fellowship, Dr. Nandi is investigating the interface of quantum theory of gravity and theory of quantum computation. She is working to understand aspects of quantum information theory for non-Lorentzian field theories, in the context of flat-space holography, and also the dynamics of quantum systems.