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Variational Hybrid Quantum Algorithms
Numerical approaches to entangling dynamics from variational principles
arXiv
Authors: Christian Offen, Boris Wembe, Laura Ares, Jan Sperling, Sina Ober-Blöbaum
Year
2026
Paper ID
2801
Status
Preprint
Abstract Read
~2 min
Abstract Words
219
Citations
N/A
Abstract
In this work, we address the numerical identification of entanglement in dynamical scenarios. To this end, we consider different programs based on the restriction of the evolution to the set of separable (i.e., non-entangled) states, together with the discretization of the space of variables for numerical computations. As a first approach, we apply linear splitting methods to the restricted, continuous equations of motion derived from variational principles. We utilize an exchange interaction Hamiltonian to confirm that the numerical and analytical solutions coincide in the limit of small time steps. The application to different Hamiltonians shows the wide applicability of the method to detect dynamical entanglement. To avoid the derivation of analytical solutions for complex dynamics, we consider variational, numerical integration schemes, introducing a variational discretization for Lagrangians linear in velocities. Here, we examine and compare two approaches: one in which the system is discretized before the restriction is applied, and another in which the restriction precedes the discretization. We find that the "first-discretize-then-restrict" method becomes numerically unstable, already for the example of an exchange-interaction Hamiltonian, which can be an important consideration for the numerical analysis of constrained quantum dynamics. Thereby, broadly applicable numerical tools, including their limitations, for studying entanglement over time are established for assessing the entangling power of processes that are used in quantum information theory.
Why This Paper Matters
- This paper contributes to the Variational & Hybrid Quantum Algorithms research area in the Quantum Articles archive.
- It adds a 2026 reference point for readers tracking recent quantum research.
- In this work, we address the numerical identification of entanglement in dynamical scenarios.
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