论文标题

通过普遍的光子减法产生光学Schrödinger的猫状态

Generation of optical Schrödinger's cat states by generalized photon subtraction

论文作者

Takase, Kan, Yoshikawa, Jun-ichi, Asavanant, Warit, Endo, Mamoru, Furusawa, Akira

论文摘要

我们提出了一种光学Schrödinger猫状态的高速生成方法。到目前为止,挤压真空状态的光子减法一直是猫态生成的标准方法,但其对实验参数的约束限制了产生速率。在本文中,我们以一种任意两种模式高斯状态的一种模式来考虑国家数量测量的状态,这是传统光子减法的概括,并得出了产生高效率和大振幅猫状态的条件。我们的方法放宽了对实验参数的限制,使我们能够优化它们并达到高发电率。假设实验性条件是,具有较大振幅的猫状态($ |α| \ ge 2)$可以超过每秒的巨额,大约$ 10^3 $至$ 10^6 $比常规光子减法的典型率好。相关技术的进步将进一步提高该速率。在使用光学连续变量的量子计算中,以高速率生成非高斯状态的能力很重要,在该量子计算中,已经证明了可扩展的计算平台,但是非高斯光的光明状态仍然是一项艰巨的任务。我们的建议减少了国家准备的困难,并为量子光学元件的实际应用打开了方法。

We propose a high-rate generation method of optical Schrödinger's cat states. Thus far, photon subtraction from squeezed vacuum states has been a standard method in cat-state generation, but its constraints on experimental parameters limit the generation rate. In this paper, we consider the state generation by photon number measurement in one mode of arbitrary two-mode Gaussian states, which is a generalization of conventional photon subtraction, and derive the conditions to generate high-fidelity and large-amplitude cat states. Our method relaxes the constraints on experimental parameters, allowing us to optimize them and attain a high generation rate. Supposing realistic experimental conditions, the generation rate of cat states with large amplitudes ($|α| \ge 2)$ can exceed megacounts per second, about $10^3$ to $10^6$ times better than typical rates of conventional photon subtraction. This rate would be improved further by the progress of related technologies. Ability to generate non-Gaussian states at a high rate is important in quantum computing using optical continuous variables, where scalable computing platforms have been demonstrated but preparation of non-Gaussian states of light remains as a challenging task. Our proposal reduces the difficulty of the state preparation and open a way for practical applications in quantum optics.

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