Celestial diamonds: conformal multiplets in celestial CFT

  • Sabrina Pasterski
  • , Andrea Puhm
  • , Emilio Trevisani

Research output: Contribution to journalArticlepeer-review

Abstract

We examine the structure of global conformal multiplets in 2D celestial CFT. For a 4D bulk theory containing massless particles of spin s = {0121322} we classify and construct all SL(2,ℂ) primary descendants which are organized into ‘celestial diamonds’. This explicit construction is achieved using a wavefunction-based approach that allows us to map 4D scattering amplitudes to celestial CFT correlators of operators with SL(2,ℂ) conformal dimension ∆ and spin J. Radiative conformal primary wavefunctions have J = ±s and give rise to conformally soft theorems for special values of ∆ ∈ 12ℤ. They are located either at the top of celestial diamonds, where they descend to trivial null primaries, or at the left and right corners, where they descend both to and from generalized conformal primary wavefunctions which have |J| ≤ s. Celestial diamonds naturally incorporate degeneracies of opposite helicity particles via the 2D shadow transform relating radiative primaries and account for the global and asymptotic symmetries in gauge theory and gravity.

Original languageEnglish
Article number72
JournalJournal of High Energy Physics
Volume2021
Issue number11
DOIs
Publication statusPublished - 1 Nov 2021

Keywords

  • Gauge-gravity correspondence
  • Scattering Amplitudes
  • Space-Time Symmetries
  • Spontaneous Symmetry Breaking

Fingerprint

Dive into the research topics of 'Celestial diamonds: conformal multiplets in celestial CFT'. Together they form a unique fingerprint.

Cite this