arXiv · 2609.31867
Spread Complexity for Local Operator Quenches with Conserved Momentum
Abstract
We study a family of locally excited states in two-dimensional conformal field theories in different setups, defined on the plane, on the cylinder, or at finite temperature. These states are constructed by assigning independent chiral and anti-chiral regulators to a local primary operator, leading to excitations carrying net momentum. We analytically calculate the first few Lanczos coefficients and the early time behaviour of the spread complexity associated with these states. Then, using numerical methods, we obtain the coefficients reaching larger Krylov indices and find the associated spread complexity for a longer range of time evolution. We also compare the rate of change of the resulting spread complexity with the proposed holographic dual quantity, related to the proper momentum of an infalling particle in the dual bulk, but we observe a mismatch.
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Ali Fatemiabhari. 2026-09-25. Spread Complexity for Local Operator Quenches with Conserved Momentum. https://arxiv.org/abs/2609.31867
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