DocumentCode
175753
Title
Optimal guidance law in quantum mechanics
Author
Ciann-Dong Yang ; Lieh-Lieh Cheng ; Ming-Hsien Hsia
Author_Institution
Dept. of Aeronaut. & Astronaut., Nat. Cheng Kung Univ., Tainan, Taiwan
fYear
2014
fDate
May 31 2014-June 2 2014
Firstpage
1095
Lastpage
1100
Abstract
Following the de Broglie´s idea of pilot wave, this paper treats quantum mechanics as a problem of stochastic optimal guidance law design. The guidance scenario considered in the quantum world is that an electron is the flight vehicle to be guided and its accompanying pilot wave is the guidance law to be designed so as to guide the electron to a random target driven by Wiener process, while minimizing a cost-to-go function. After solving the stochastic optimal guidance problem by differential dynamic programming, we point out that the optimal pilot wave guiding the particle´s motion is just the wavefunction ψ(t,x), a solution to Schrödinger equation. Quantum trajectories under the action of the optimal guidance law are solved and their statistical distribution is shown to coincide with the prediction of the probability density function ψ*ψ.
Keywords
Schrodinger equation; dynamic programming; optimal control; stochastic processes; wave functions; Schrodinger equation solution; Wiener process; cost to go function; de Broglie pilot wave; differential dynamic programming; flight vehicle; guidance scenario; optimal pilot wave; particle motion; probability density function; quantum mechanics; quantum trajectories; random target; stochastic optimal guidance law; wavefunction; Cost function; Dynamic programming; Equations; Optimal control; Quantum mechanics; Trajectory; Uncertainty; Optimal Guidance; Pilot Wave; Quantum Trajectory; Stochastic Control;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Decision Conference (2014 CCDC), The 26th Chinese
Conference_Location
Changsha
Print_ISBN
978-1-4799-3707-3
Type
conf
DOI
10.1109/CCDC.2014.6852328
Filename
6852328
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