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Formulation and numerical solution of finite-level quantum optimal control problems

✍ Scribed by A. Borzı`; J. Salomon; S. Volkwein


Publisher
Elsevier Science
Year
2008
Tongue
English
Weight
630 KB
Volume
216
Category
Article
ISSN
0377-0427

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✦ Synopsis


Optimal control of finite-level quantum systems is investigated, and iterative solution schemes for the optimization of a control representing laser pulses are developed. The purpose of this external field is to channel the system's wavefunction between given states in its most efficient way. Physically motivated constraints, such as limited laser resources or population suppression of certain states, are accounted for through an appropriately chosen cost functional. First-order necessary optimality conditions and secondorder sufficient optimality conditions are investigated. For solving the optimal control problems, a cascadic non-linear conjugate gradient scheme and a monotonic scheme are discussed. Results of numerical experiments with a representative finite-level quantum system demonstrate the effectiveness of the optimal control formulation and efficiency and robustness of the proposed approaches.


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