Circuit complexity in interacting QFTs and RG flows

Bhattacharyya, Arpan ; Shekar, Arvind ; Sinha, Aninda (2018) Circuit complexity in interacting QFTs and RG flows Journal of High Energy Physics, 2018 (10). ISSN 1126-6708

Full text not available from this repository.

Official URL: https://doi.org/10.1007/JHEP10(2018)140

Related URL: http://dx.doi.org/10.1007/JHEP10(2018)140

Abstract

We consider circuit complexity in certain interacting scalar quantum field theories, mainly focusing on the ϕ4 theory. We work out the circuit complexity for evolving from a nearly Gaussian unentangled reference state to the entangled ground state of the theory. Our approach uses Nielsen’s geometric method, which translates into working out the geodesic equation arising from a certain cost functional. We present a general method, making use of integral transforms, to do the required lattice sums analytically and give explicit expressions for the d = 2, 3 cases. Our method enables a study of circuit complexity in the epsilon expansion for the Wilson-Fisher fixed point. We find that with increasing dimensionality the circuit depth increases in the presence of the ϕ4 interaction eventually causing the perturbative calculation to breakdown. We discuss how circuit complexity relates with the renormalization group.

Item Type:Article
Source:Copyright of this article belongs to Institute of Physics Publishing.
Keywords:Effective Field Theories; Lattice Quantum Field Theory; Renormalization Group; AdS-CFT Correspondence
ID Code:140071
Deposited On:04 Sep 2025 15:04
Last Modified:04 Sep 2025 15:04

Repository Staff Only: item control page