Reconstructing Quantum States and Expectations via Dynamical Tomography

Fuente: arXiv
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Main Authors: Peruzzo, Marco, Grigoletto, Tommaso, Ticozzi, Francesco
Format: Preprint
Published: 2025
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author Peruzzo, Marco
Grigoletto, Tommaso
Ticozzi, Francesco
author_facet Peruzzo, Marco
Grigoletto, Tommaso
Ticozzi, Francesco
contents When the dynamics of a quantum system of interest is known, an informationally-complete set of observables is not needed for state reconstruction via tomographic techniques: letting the system evolve before performing the measurement allows one to effectively extend the available ways to probe the system. This idea leads to dynamical quantum tomography, whose feasibility we characterize for general quantum dynamics using Krylov-based methods. Specializing to Markovian ones, we also provide deterministic tests, and randomized ones to effectively assess parametric dynamics. The limits of the methods are explored comparing unitary and open dynamics when a single observable is available, and the set of observables whose expectation can be reconstructed from the available ones characterized. The framework is illustrated with applications to a spin chain (with or without dissipation) and an electron-nuclear system
format Preprint
id arxiv_https___arxiv_org_abs_2509_24636
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Reconstructing Quantum States and Expectations via Dynamical Tomography
Peruzzo, Marco
Grigoletto, Tommaso
Ticozzi, Francesco
Quantum Physics
When the dynamics of a quantum system of interest is known, an informationally-complete set of observables is not needed for state reconstruction via tomographic techniques: letting the system evolve before performing the measurement allows one to effectively extend the available ways to probe the system. This idea leads to dynamical quantum tomography, whose feasibility we characterize for general quantum dynamics using Krylov-based methods. Specializing to Markovian ones, we also provide deterministic tests, and randomized ones to effectively assess parametric dynamics. The limits of the methods are explored comparing unitary and open dynamics when a single observable is available, and the set of observables whose expectation can be reconstructed from the available ones characterized. The framework is illustrated with applications to a spin chain (with or without dissipation) and an electron-nuclear system
title Reconstructing Quantum States and Expectations via Dynamical Tomography
topic Quantum Physics
url https://arxiv.org/abs/2509.24636