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Quantum Information and Quantum simulation with Trapped Rydberg Atoms : Gateway to a New Technological Era

Implementing Organization

Principal Investigator
Dr. Raka Dasgupta
Rajabazar science College (University College Of science And Technology), University Of Calcutta, West Bengal
CO-Principal Investigator
Dr. Indrakshi Raychowdhury
Birla Institute Of Technology & science Pilani (BITs), Goa-403726

Project Overview

Ultracold many-body systems are excellent platforms for quantum information processing and simulating quantum systems. Neutral ultracold atoms, excited to Rydberg states, offer advantages such as strong dipole-dipole interactions over large distances and high lifetimes. The project aims to explore the use of Rydberg atoms for efficient quantum information processing by establishing a theoretical framework for stable multi-particle entanglement using Rydberg blockade and system dissipation. The project also explores the potential of long-range interactions among bosons in optical lattices, with ultracold bosons dressed with molecular bound states in Rydberg interaction potentials serving as the perfect platform for implementing such interactions. The phase diagram for a system of Rydberg atoms in an optical lattice will be constructed, both in a pure system and in the presence of disorder. The project also explores the Rydberg atom platform as a quantum simulator for strongly correlated systems, with a focus on quantum simulating gauge theories. The aim is to simulate 1-dimensional gauge theories and plaquette terms in 2-dimensional gauge theories using Rydberg atoms. The final goal is to simulate matter-gauge interactions in two or higher dimensional non-Abelian gauge field theories with a combination of trapped atoms, including Rydberg-excited ones. The project aims to bring out interesting new results with significant applicability in technological fields.

Source

Source
Anusandhan National Research Foundation/science and Engineering Research Board (sERB), DsT 2023-24
Funding Organization
Quick Information
Area of Research
Physical Sciences
Start Date
2023
End Date
2026
Status
Ongoing
Contact
dasguptaraka@gmail.com
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
Publications
00
No. of Patents
Filed : 00
Grant : 00
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