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Real-time Estimators for Scattering Observables: A full account of finite volume errors for quantum simulation

Real-time Estimators for Scattering Observables: A full account of finite volume errors for quantum simulation

来源:Arxiv_logoArxiv
英文摘要

The real-time correlators of quantum field theories can be directly probed through new approaches to simulation, such as quantum computing and tensor networks. This provides a new framework for computing scattering observables in lattice formulations of strongly interacting theories, such as lattice quantum chromodynamics. In this paper, we prove that the proposal of real-time estimators of scattering observables is universally applicable to all scattering observables of gapped quantum field theories. All finite-volume errors are exponentially suppressed, and the rate of this suppression is controlled by the regulator considered, namely, a displacement of the spectrum of the theory into the complex plane. A partial restoration of Lorentz symmetry by averaging over different boosts gives an additional suppression of finite volume errors. Our results also apply to the simulation of wavepacket scattering, where a similar averaging is performed to construct the wavepackets that regulate the finite volume effects. We also comment on potential applications of our results to traditional computational schemes.

Ivan M. Burbano、Marco A. Carrillo、Rana Urek、Anthony N. Ciavarella、Raúl A. Brice?o

物理学

Ivan M. Burbano,Marco A. Carrillo,Rana Urek,Anthony N. Ciavarella,Raúl A. Brice?o.Real-time Estimators for Scattering Observables: A full account of finite volume errors for quantum simulation[EB/OL].(2025-06-06)[2025-06-30].https://arxiv.org/abs/2506.06511.点此复制

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