Optimization of Time-Ordered Processes in the Finite and Asymptotic Regimes

Author:

Weilenmann Mirjam12ORCID,Budroni Costantino3ORCID,Navascués Miguel2ORCID

Affiliation:

1. Département de Physique Appliquée, Université de Genève

2. Institute for Quantum Optics and Quantum Information—IQOQI Vienna, Austrian Academy of Sciences

3. Department of Physics “E. Fermi”, University of Pisa

Abstract

Many problems in quantum information theory can be formulated as optimizations over the sequential outcomes of dynamical systems subject to unpredictable external influences. Such problems include many-body entanglement detection through adaptive measurements, computing the maximum average score of a preparation game over a continuous set of target states, and limiting the behavior of a (quantum) finite-state automaton. In this work, we introduce tractable relaxations of this class of optimization problems. To illustrate their performance, we use them to: (a) compute the probability that a finite-state automaton outputs a given sequence of bits; (b) develop a new many-body entanglement-detection protocol; and (c) let the computer an adaptive protocol for magic state detection. As we further show, the maximum score of a sequential problem in the limit of infinitely many time steps is in general incomputable. Nonetheless, we provide general heuristics to bound this quantity and show that they provide useful estimates in relevant scenarios. Published by the American Physical Society 2024

Funder

Austrian Science Fund

Publisher

American Physical Society (APS)

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