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Spin coherent states phenomena probed by quantum state tomography in Zeeman perturbed nuclear quadrupole resonance

机译:Zeeman扰动核四边形共振中量子状态断层扫描探测的旋转相干状态现象

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Recently, we reported an experimental implementation of quantum information processing (QIP) by nuclear quadrupole resonance (NQR). In this work, we present the first quantum state tomography (QST) experimental implementation in the NQR QIP context. Two approaches are proposed, employing coherence selection by temporal and spatial averaging. Conditions for reduction in the number of cycling steps are analyzed, which can be helpful for larger spin systems. The QST method was applied to the study of spin coherent states, where the alignment-to-orientation phenomenon and the evolution of squeezed spin states show the effect of the nonlinear quadrupole interaction intrinsic to the NQR system. The quantum operations were implemented using a single-crystal sample of KCIO3 and observing (CI)-C-35 nuclei, which posses spin 3/2.
机译:最近,我们报告了核心谐波共振(NQR)的量子信息处理(QIP)的实验实施。 在这项工作中,我们介绍了NQR QIP上下文中的第一个量子状态断层扫描(QST)实验实施。 提出了两种方法,采用时间和空间平均相干选择。 分析了减少循环步骤数量的条件,这对较大的自旋系统有所帮助。 将QST方法应用于旋转相干状态的研究,其中对准到取向现象和挤压旋转状态的演化表明非线性四极相互作用内在对NQR系统的影响。 使用KCIO3的单晶样品和观察(CI)-C-35核的单晶样品进行了量子操作,其旋转3/2。

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