Indexed metadata

A PDE Construction of the Euclidean Φ34\Phi ^4_3 Quantum Field Theory

Massimiliano Gubinelli, Martina Hofmanová

Source record

Source: Crossref

Published: Apr 15, 2021

DOI: 10.1007/s00220-021-04022-0

Open original source ↗

Source abstract

Abstract We present a new construction of the Euclidean Φ4\Phi ^4 Φ 4 quantum field theory on R3{\mathbb {R}}^3 R 3 based on PDE arguments. More precisely, we consider an approximation of the stochastic quantization equation on R3{\mathbb {R}}^3 R 3 defined on a periodic lattice of mesh size ε\varepsilon ε and side length M . We introduce a new renormalized energy method in weighted spaces and prove tightness of the corresponding Gibbs measures as ε→0\varepsilon \rightarrow 0 ε → 0 , M→∞M \rightarrow \infty M → ∞ . Every limit point is non-Gaussian and satisfies reflection positivity, translation invariance and stretched exponential integrability. These properties allow to verify the Osterwalder–Schrader axioms for a Euclidean QFT apart from rotation invariance and clustering. Our argument applies to arbitrary positive coupling constant, to multicomponent models with O ( N ) symmetry and to some long-range variants. Moreover, we establish an integration by parts formula leading to the hierarchy of Dyson–Schwinger equations for the Euclidean correlation functions. To this end, we identify the renormalized cubic term as a distribution on the space of Euclidean fields.

Evidence graph

No public relationships recorded yet.

Integrity note: This page is a factual metadata record created by deterministic ingestion. It is not a claim that the work moves a mathematical frontier or has been independently verified.