首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Solid-state multiple quantum NMR in quantum information processing: Exactly solvable models
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Solid-state multiple quantum NMR in quantum information processing: Exactly solvable models

机译:量子信息处理中的固态多量子NMR:完全可求解的模型

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Multiple quantum (MQ) NMR is an effective tool for the generation of a large cluster of correlated particles, which, in turn, represent a basis for quantum information processing devices. Studying the available exactly solvable models clarifies many aspects of the quantum information. In this study, we consider two exactly solvable models in the MQ NMR experiment: (i) the isolated system of two spin-1/2 particles (dimers) and (ii) the large system of equivalent spin-1/2 particles in a nanopore. The former model is used to describe the quantum correlations and their relations with the MQ NMR coherences, whereas the latter helps one to model the creation and decay of large clusters of correlated particles.
机译:多量子(MQ)NMR是生成大量相关粒子簇的有效工具,而这又代表了量子信息处理设备的基础。研究可用的精确可解模型可以阐明量子信息的许多方面。在这项研究中,我们考虑了MQ NMR实验中的两个完全可解的模型:(i)两个自旋1/2粒子(二聚体)的分离系统,以及(ii)在一个自旋中的等效自旋1/2粒子的大系统纳米孔。前一种模型用于描述量子相关性及其与MQ NMR相干性的关系,而后一种模型则有助于对相关粒子大簇的产生和衰变进行建模。

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