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  5. Circuit complexity for Carrollian Conformal (BMS) field theories
 
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Circuit complexity for Carrollian Conformal (BMS) field theories

Source
Journal of High Energy Physics
Date Issued
2023-07-01
Author(s)
Bhattacharyya, Arpan  
Nandi, Poulami
DOI
10.1007/JHEP07(2023)105
Volume
2023
Issue
7
Abstract
We systematically explore the construction of Nielsen’s circuit complexity to a non-Lorentzian field theory keeping in mind its connection with flat holography. We consider a 2d boundary field theory dual to 3d asymptotically flat spacetimes with infinite-dimensional BMS<inf>3</inf> as the asymptotic symmetry algebra. We compute the circuit complexity functional in two distinct ways. For the Virasoro group, the complexity functional resembles the geometric action on its co-adjoint orbit. Using the limiting approach on the relativistic results, we show that it is possible to write BMS complexity in terms of the geometric action on BMS co-adjoint orbit. However, the limiting approach fails to capture essential information about the conserved currents generating BMS supertranslations. Hence, we refine our analysis using the intrinsic approach. Here, we use only the symmetry transformations and group product laws of BMS to write the complexity functional. The refined analysis shows a richer structure than only the geometric action. Lastly, we extremize and solve the equations of motion (for a simple solution) in terms of the group paths and connect our results with available literature.
Publication link
https://link.springer.com/content/pdf/10.1007/JHEP07(2023)105.pdf
URI
http://repository.iitgn.ac.in/handle/IITG2025/26740
Subjects
AdS-CFT Correspondence | Gauge-Gravity Correspondence | Scale and Conformal Symmetries
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