论文标题

基于测量的KERR参数振荡器的状态制备

Measurement-based state preparation of Kerr parametric oscillators

论文作者

Suzuki, Yuta, Watabe, Shohei, Kawabata, Shiro, Masuda, Shumpei

论文摘要

KERR参数振荡器(KPO)在其应用于量子信息处理和量子模拟方面引起了越来越多的关注。当将KPO的状态制备和测量是典型的要求时,它们被用作量子位。先前提出的KPO状态制备的方法利用泵场或辅助驱动场的调制。我们研究了基于同源性检测的KPO的随机态制备,该检测不需要调节泵场或辅助驱动场,因此可以排除可能无法控制这些磁场的不良效果。我们定量地表明,如果检测数据在适当的时间下平均以减少测量噪声的效果,则与KPO的状态具有很强的相关性,因此可以用于估计KPO的状态(随机状态制备)。我们研究了状态估计的成功概率,这些概率考虑了测量噪声和位倒数的影响。此外,通过开发一个二项式协调状态模型获得了实现高成功概率的平均时间的适当范围,该模型描述了在同伴检测下KPO的随机动力学。

Kerr parametric oscillators (KPOs) have attracted increasing attention in terms of their application to quantum information processing and quantum simulations. The state preparation and measurement of KPOs are typical requirements when they are used as qubits. The methods previously proposed for state preparations of KPOs utilize modulation of a pump field or an auxiliary drive field. We study the stochastic state preparation of a KPO based on homodyne detection, which does not require modulation of a pump field nor an auxiliary drive field, and thus can exclude unwanted effects of possible imperfection in control of these fields. We quantitatively show that the detection data, if averaged over a proper time to decrease the effect of measurement noise, has a strong correlation with the state of the KPO, and therefore can be used to estimate the state of the KPO (stochastic state preparation). We examine the success probability of the state estimation taking into account the effect of the measurement noise and bit flips. Moreover, the proper range of the averaging time to realize a high success probability is obtained by developing a binomial-coherent-state model, which describes the stochastic dynamics of the KPO under homodyne detection.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源