A novel simulation strategy is proposed for searching for semiconductor quantum devices that are optimized with respect to required performances. Based on evolutionary programming, a technique that implements the paradigm of genetic algorithms in more-complex data structures than strings of bits, the proposed algorithm is able to deal with quantum devices with preset nontrivial constraints (e.g., transition energies, geometric requirements). Therefore our approach allows for automatic design, thus avoiding costly by-hand optimizations. We demonstrate the advantages of the proposed algorithm through a relevant and nontrivial application, the optimization of a second-harmonic-generation device working in resonance conditions.

Optimization of semiconductor quantum devices by evolutionary search / Goldoni, G.; Rossi, Fausto. - In: OPTICS LETTERS. - ISSN 0146-9592. - STAMPA. - 25:14(2000), pp. 1025-1027. [10.1364/OL.25.001025]

Optimization of semiconductor quantum devices by evolutionary search

ROSSI, FAUSTO
2000

Abstract

A novel simulation strategy is proposed for searching for semiconductor quantum devices that are optimized with respect to required performances. Based on evolutionary programming, a technique that implements the paradigm of genetic algorithms in more-complex data structures than strings of bits, the proposed algorithm is able to deal with quantum devices with preset nontrivial constraints (e.g., transition energies, geometric requirements). Therefore our approach allows for automatic design, thus avoiding costly by-hand optimizations. We demonstrate the advantages of the proposed algorithm through a relevant and nontrivial application, the optimization of a second-harmonic-generation device working in resonance conditions.
2000
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/1405227
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