Kernekoncepter
This paper explores the holographic duality between three-dimensional de Sitter space (dS3) and two-dimensional conformal field theory (CFT2) by constructing CFT states that represent local excitations in dS3, called bulk local states. The authors find that the conjugation operation in dS3/CFT2 differs significantly from AdS3/CFT2, requiring a CPT-invariant combination of two bulk local states to obtain physical states. This difference explains the emergence of a time coordinate from the Euclidean CFT and allows for the derivation of the correct two-point function in the dS Euclidean vacuum.
Doi, K., Ogawa, N., Shinmyo, K., Suzuki, Y., & Takayanagi, T. (2024). Probing de Sitter Space Using CFT States. Journal of High Energy Physics. arXiv:2405.14237v3 [hep-th]
This research paper aims to understand the holographic duality between three-dimensional de Sitter space (dS3) and two-dimensional conformal field theory (CFT2) by constructing and analyzing CFT states that correspond to local excitations in dS3.