Pointwise and dynamic programming control synthesis for finite-level open quantum memory systems

Fuente: arXiv
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Hauptverfasser: Vladimirov, Igor G., Petersen, Ian R., Shi, Guodong
Format: Preprint
Veröffentlicht: 2026
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author Vladimirov, Igor G.
Petersen, Ian R.
Shi, Guodong
author_facet Vladimirov, Igor G.
Petersen, Ian R.
Shi, Guodong
contents This paper is concerned with finite-level quantum memory systems for retaining initial dynamic variables in the presence of external quantum noise. The system variables have an algebraic structure, similar to that of the Pauli matrices, and their Heisenberg picture evolution is governed by a quasilinear quantum stochastic differential equation. The latter involves a Hamiltonian whose parameters depend affinely on a classical control signal in the form of a deterministic function of time. The memory performance is quantified by a mean-square deviation of quantum system variables of interest from their initial conditions. We relate this functional to a matrix-valued state of an auxiliary classical control-affine dynamical system. This leads to a pointwise control design where the control signal minimises the time-derivative of the mean-square deviation with an additional quadratic penalty on the control. In an alternative finite-horizon setting with a terminal-integral cost functional, we apply dynamic programming and obtain a quadratically nonlinear Hamilton-Jacobi-Bellman equation, for which a solution is outlined in the form of a recursively computed asymptotic expansion.
format Preprint
id arxiv_https___arxiv_org_abs_2603_29225
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Pointwise and dynamic programming control synthesis for finite-level open quantum memory systems
Vladimirov, Igor G.
Petersen, Ian R.
Shi, Guodong
Optimization and Control
Systems and Control
Quantum Physics
81Q93, 81S25, 81S05, 81S22, 81P16, 93E20, 49N10, 49N35, 93B52, 49K15, 49L12, 49L20
This paper is concerned with finite-level quantum memory systems for retaining initial dynamic variables in the presence of external quantum noise. The system variables have an algebraic structure, similar to that of the Pauli matrices, and their Heisenberg picture evolution is governed by a quasilinear quantum stochastic differential equation. The latter involves a Hamiltonian whose parameters depend affinely on a classical control signal in the form of a deterministic function of time. The memory performance is quantified by a mean-square deviation of quantum system variables of interest from their initial conditions. We relate this functional to a matrix-valued state of an auxiliary classical control-affine dynamical system. This leads to a pointwise control design where the control signal minimises the time-derivative of the mean-square deviation with an additional quadratic penalty on the control. In an alternative finite-horizon setting with a terminal-integral cost functional, we apply dynamic programming and obtain a quadratically nonlinear Hamilton-Jacobi-Bellman equation, for which a solution is outlined in the form of a recursively computed asymptotic expansion.
title Pointwise and dynamic programming control synthesis for finite-level open quantum memory systems
topic Optimization and Control
Systems and Control
Quantum Physics
81Q93, 81S25, 81S05, 81S22, 81P16, 93E20, 49N10, 49N35, 93B52, 49K15, 49L12, 49L20
url https://arxiv.org/abs/2603.29225