期刊
ANNUAL REVIEWS IN CONTROL
卷 54, 期 -, 页码 305-313出版社
PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.arcontrol.2022.07.006
关键词
Quantum ensembles; Ensemble control; Moment representations; Quantization
This paper presents a distinct perspective for understanding and controlling quantum ensemble systems by transforming them to a space with reduced dimensions and distinctive network structures through the introduction of moment representations. The technique of moment quantization enables the control of spin ensembles through the control of their moment systems, leading to a new control analysis and design paradigm for quantum ensemble systems based on truncated moment systems.
Robust excitation of a large spin ensemble is a long-standing problem in the field of quantum information science and engineering and presents a grand challenge in quantum control. A formal theoretical treatment of this task is to formulate it as an ensemble control problem defined on an infinite-dimensional space. In this paper, we present a distinct perspective to understand and control quantum ensemble systems. Instead of directly analyzing spin ensemble systems defined on a Hilbert space, we transform them to a space where the systems have reduced dimensions with distinctive network structures through the introduction of moment representations. In particular, we illustrate the idea of moment quantization for a spin ensemble and illuminate how this technique leads to a dynamically equivalent control system of moments. This equivalence enables the control of spin ensembles through the control of their moment systems, which in turn creates a new control analysis and design paradigm for quantum ensemble systems based on the use of truncated moment systems.
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