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On readout of vibrational qubits using quantum beats

机译:用量子拍读出振动量子比特

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Readout of the final states of qubits is a crucial step towards implementing quantum computation in experiment. Although not scalable to large numbers of qubits per molecule, computational studies show that molecular vibrations could provide a significant (factor 2-5 in the literature) increase in the number of qubits compared to two-level systems. In this theoretical work, we explore the process of readout from vibrational qubits in thiophosgene molecule, SCCl2, using quantum beat oscillations. The quantum beats are measured by first exciting the superposition of the qubit-encoding vibrational states to the electronically excited readout state with variable time-delay pulses. The resulting oscillation of population of the readout state is then detected as a function of time delay. In principle, fitting the quantum beat signal by an analytical expression should allow extracting the values of probability amplitudes and the relative phases of the vibrational qubit states. However, we found that if this procedure is implemented using the standard analytic expression for quantum beats, a non-negligible phase error is obtained. We discuss the origin and properties of this phase error, and propose a new analytical expression to correct the phase error. The corrected expression fits the quantum beat signal very accurately, which may permit reading out the final state of vibrational qubits in experiments by combining the analytic fitting expression with numerical modelling of the readout process. The new expression is also useful as a simple model for fitting any quantum beat experiments where more accurate phase information is desired. (C) 2014 AIP Publishing LLC.
机译:读取量子位的最终状态是在实验中实现量子计算的关键步骤。尽管不能扩展到每个分子大量的量子位,但计算研究表明,与两级系统相比,分子振动可以使量子位的数量显着增加(文献中的2-5倍)。在这项理论工作中,我们探索了使用量子拍频振荡从硫光气分子SCCl2中的振动量子位读出的过程。通过首先用可变的时延脉冲将量子比特编码的振动状态的叠加激发到电子激发的读出状态来测量量子拍。然后,根据时间延迟来检测所产生的读出状态的总体振荡。原则上,通过解析表达式拟合量子拍信号,应允许提取概率振幅和振动量子位状态的相对相位的值。但是,我们发现,如果使用标准的量子拍的解析表达式来执行此过程,则将获得不可忽略的相位误差。我们讨论了该相位误差的起源和性质,并提出了一种新的解析表达式来校正相位误差。校正后的表达式非常精确地拟合了量子拍信号,通过结合解析拟合表达式和读出过程的数值模型,可以允许在实验中读出振动量子位的最终状态。新的表达式还可用作简单模型,适合需要更精确相位信息的任何量子拍实验。 (C)2014 AIP Publishing LLC。

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