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March 21, 2026Journal of High Energy Physics2 citationsOpen Access

Norm of the no-boundary state

JCJordan CotlerKJKristan Jensen

Key Points

  • This work analyzes the norm of the no-boundary state in the context of Einstein gravity and a positive cosmological constant.
  • Analyzed scenarios in an asymptotically de Sitter universe with a sphere boundary at timelike infinity.
  • Calculated norms to one-loop order at late time for the no-boundary state.
  • Incorporated the effects of matter and observer presence on norm stabilization.
  • The norm of the no-boundary state approaches zero at late times.
  • The presence of an observer maintains a large, positive value for the norm.
  • Expressions were derived showing dependence on spacetime dimensions and tree-level entropy.

Abstract

A bstract We consider Einstein gravity with positive cosmological constant coupled to matter in an asymptotically de Sitter universe with sphere boundary at timelike infinity. In this setting we show that, to one-loop order and at late time, the norm of the no-boundary state vanishes, going as e^S₀ZS₀^{-d (d+1) /4}vol (SO (d, 1) ) e S 0 Z S 0 − d d + 1 / 4 vol SO d 1 with S 0 the tree-level entropy of the static patch, d the spacetime dimension, and Z non-negative. We show that the presence of an observer stabilizes the norm to a large, positive value.

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Cite This Study

Cotler et al. (2026) studied this question.

synapsesocial.com/papers/69be361e6e48c4981c674d40https://doi.org/10.1007/jhep03(2026)180
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