Many-body localisation: From Fock/Hilbert space to real space
Implementing Organization
International Centre For Theoretical Sciences, TIFR, Bombay, Maharashtra
Principal Investigator
Dr. Sthitadhi Roy
International Centre For Theoretical Sciences, TIFR, Bombay, Maharashtra
International Centre For Theoretical Sciences, TIFR
About
The development of quantum technologies relies heavily on a comprehensive understanding of non-equilibrium dynamics of quantum many-body systems and their quantum information. However, these systems often equilibrate to thermal states, leading to the scrambling of coherent quantum information. This is closely linked to the growth of quantum entanglement. Therefore, it is crucial to develop ideas to arrest entanglement growth and localize quantum information for controlled retrieval and manipulation. The proposed research aims to contribute to understanding many-body localisation (MBL) phases and unconventional phase transitions from ergodic, delocalised phases to MBL phases, focusing on the dynamics of local correlations and entanglement. The project will use time-dependent state amplitudes on the Fock/Hilbert space to develop a theoretical framework for the dynamics. Analytical progress will be made using diagrammatic techniques, similar to those used for single-particle localisation on high-dimensional graphs but with non-trivially scaled correlations and connectivities. A parallel line of research will focus on rare resonances in the MBL phase, which are understood to control dynamical correlations and the MBL transition via their proliferation. The research will formulate a theory rooted in microscopics by identifying resonant clusters on the Fock/Hilbert-space graph and their growth under dynamics. The comprehensive understanding of MBL phases will help experimentalists design quantum computing platforms that can robustly store quantum information.
Source
Source
Anusandhan National Research Foundation/Science and Engineering Research Board (SERB), DST 2023-24
Science and Engineering Research Board (SERB), New Delhi
Anusandhan National Research Foundation (ANRF)
Quick Information
Area of Research
Physical Sciences
Start Year
2024
End Year
2026
Sanction Amount
₹ 19.82 L
Status
Ongoing
Contact
sthitadhi91@gmail.com
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
No. of Patents
Filed :00
Grant :00
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