Synthesis of linear quantum stochastic systems via quantum feedback networks
H. I. Nurdin

TL;DR
This paper develops a new synthesis algorithm for linear quantum stochastic systems that relies solely on field-mediated interactions, simplifying physical realization compared to previous methods involving direct interaction Hamiltonians.
Contribution
It introduces a synthesis method for linear quantum stochastic systems using only field-mediated interactions, enhancing experimental feasibility.
Findings
New synthesis algorithm based on field-mediated interactions
Explicit examples demonstrating realization of two-degree systems
Improved practical implementation over previous direct Hamiltonian methods
Abstract
Recent theoretical and experimental investigations of coherent feedback control, the feedback control of a quantum system with another quantum system, has raised the important problem of how to synthesize a class of quantum systems, called the class of linear quantum stochastic systems, from basic quantum optical components and devices in a systematic way. The synthesis theory sought in this case can be naturally viewed as a quantum analogue of linear electrical network synthesis theory and as such has potential for applications beyond the realization of coherent feedback controllers. In earlier work, Nurdin, James and Doherty have established that an arbitrary linear quantum stochastic system can be realized as a cascade connection of simpler one degree of freedom quantum harmonic oscillators, together with a direct interaction Hamiltonian which is bilinear in the canonical operators…
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