DocumentCode :
3686128
Title :
A transverse hamiltonian variational technique for open quantum stochastic systems and its application to coherent quantum control
Author :
Igor G. Vladimirov
Author_Institution :
UNSW Canberra, Australia
fYear :
2015
Firstpage :
29
Lastpage :
34
Abstract :
This paper is concerned with variational methods for nonlinear open quantum systems with Markovian dynamics governed by Hudson-Parthasarathy quantum stochastic differential equations. The latter are driven by quantum Wiener processes of the external boson fields and are specified by the system Hamiltonian and system-field coupling operators. We consider the system response to perturbations of these energy operators and introduce a transverse Hamiltonian which encodes the propagation of the perturbations through the unitary system-field evolution. This provides a tool for the infinitesimal perturbation analysis and development of optimality conditions for coherent quantum control problems. We apply the transverse Hamiltonian variational technique to a mean square optimal coherent quantum filtering problem for a measurement-free cascade connection of quantum systems.
Keywords :
"Couplings","Yttrium","Polynomials","Symmetric matrices","Stochastic systems","Dispersion","Perturbation methods"
Publisher :
ieee
Conference_Titel :
Control Applications (CCA), 2015 IEEE Conference on
Type :
conf
DOI :
10.1109/CCA.2015.7320611
Filename :
7320611
Link To Document :
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