Arbitrary linear time invariant systems can be implemented as quantum systems if additional quantum noises are permitted in the implementation. We give several results concerning how many additional quantum noise channels are necessary to implement state space realizations and transfer functions as quantum systems. We also give algorithms to do so. We demonstrate the utility of these results with an algorithm for obtaining a suboptimal solution to a coherent quantum LQG control problem.This work was supported by the Australian Research Council and the Air Force Office of Scientific Research (Grants FA2386-09-1-4089 and FA2386-12-1-4075
The advance of experimental techniques in circuit quantum electrodynamics over last decadehas made i...
Based on a recently developed notion of physical realizability for quantum linear stochastic systems...
Abstract. Quantum versions of control problems are often more difficult than their classical counter...
Quantum versions of control problems are typically more difficult than their classical counterparts ...
Physical Realizability addresses the question of whether it is possible to implement a given LTI sys...
Based on a recently developed notion of physical realizability for quantum linear stochastic systems...
This paper surveys some recent results on the theory of quantum linear systems and presents them wit...
The paper is concerned with a problem of coherent (measurement-free) filtering for physically realiz...
The paper is concerned with a problem of coherent(measurement-free) filtering for physically realiza...
The miniaturization of electronic circuits and devices, and recent advances in laser technology, hav...
This paper surveys some recent results on the feedback control of quantum linear systems and the rob...
Quantum engineering has seen rapid growth in the past two decades. Physicists, mathematicians and en...
International audienceQuantum versions of control problems are often more difficult than their class...
A variety of tasks in quantum control, ranging from purification and cooling to quantum stabilisatio...
In this paper, an overview of research in quantum control is presented. Examples of work in the firs...
The advance of experimental techniques in circuit quantum electrodynamics over last decadehas made i...
Based on a recently developed notion of physical realizability for quantum linear stochastic systems...
Abstract. Quantum versions of control problems are often more difficult than their classical counter...
Quantum versions of control problems are typically more difficult than their classical counterparts ...
Physical Realizability addresses the question of whether it is possible to implement a given LTI sys...
Based on a recently developed notion of physical realizability for quantum linear stochastic systems...
This paper surveys some recent results on the theory of quantum linear systems and presents them wit...
The paper is concerned with a problem of coherent (measurement-free) filtering for physically realiz...
The paper is concerned with a problem of coherent(measurement-free) filtering for physically realiza...
The miniaturization of electronic circuits and devices, and recent advances in laser technology, hav...
This paper surveys some recent results on the feedback control of quantum linear systems and the rob...
Quantum engineering has seen rapid growth in the past two decades. Physicists, mathematicians and en...
International audienceQuantum versions of control problems are often more difficult than their class...
A variety of tasks in quantum control, ranging from purification and cooling to quantum stabilisatio...
In this paper, an overview of research in quantum control is presented. Examples of work in the firs...
The advance of experimental techniques in circuit quantum electrodynamics over last decadehas made i...
Based on a recently developed notion of physical realizability for quantum linear stochastic systems...
Abstract. Quantum versions of control problems are often more difficult than their classical counter...