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Quantum state tomography via mutually unbiased measurements in driven cavity QED systems

机译:通过驱动腔QED系统中相互无偏的测量来进行量子状态层析成像

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We present a feasible proposal for quantum tomography of qubit and qutrit states via mutually unbiased measurements in dispersively coupled driven cavity QED systems. We first show that measurements in the mutually unbiased bases (MUBs) are practically implemented by projecting the detected states onto the computational basis after performing appropriate unitary transformations. The measurement outcomes can then be determined by detecting the steady-state transmission spectra (SSTS) of the driven cavity. It is found that all the measurement outcomes for each MUB (i.e., all the diagonal elements of the density matrix of each detected state) can be read out directly from only one kind of SSTS. In this way, we numerically demonstrate that the exemplified qubit and qutrit states can be reconstructed with the fidelities 0.952 and 0.961, respectively. Our proposal could be straightforwardly extended to other high-dimensional quantum systems provided that their MUBs exist.
机译:我们通过色散耦合的驱动腔QED系统中相互无偏的测量,为量子位和量子态的量子层析成像提出了可行的建议。我们首先显示,通过在执行适当的transformation变换后将检测到的状态投影到计算基础上,实际上可以实现互不偏基(MUB)中的测量。然后可以通过检测从动腔的稳态透射光谱(SSTS)来确定测量结果。已经发现,每个MUB的所有测量结果(即,每个检测状态的密度矩阵的所有对角元素)都可以仅从一种SSTS直接读出。以这种方式,我们数值证明了可以分别用保真度0.952和0.961重构示例性的qubit和qutrit状态。只要他们的MUB存在,我们的建议可以直接扩展到其他高维量子系统。

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