Kang Yi-Hao, Lin Zhe-Ping, Yang Jian-Qun, Wang Yu, Song Jie, Yang Zhen-Biao, Xia Yan
Opt Express. 2023 Dec 18;31(26):42976-42994. doi: 10.1364/OE.498836.
We propose a protocol for the generation of NOON states of resonator modes. The physical model is composed of two Kerr-nonlinear resonators and a four-level qudit. Using the off-resonant couplings between the resonators and the qudit, qudit-level-dependent frequency shifts on the two resonators are induced. The frequency shifts allow us to drive different resonators to the N-photon state when the qudit is in different intermediate levels. Consequently, the generation of NOON states with arbitrary photon number N can be completed in only three steps, i.e., driving the qudit to a superposition state of the two intermediate levels, driving one of the resonators to its N-photon state, and driving the qudit back to its ground level. Numerical simulations show that, in the regime of strong Kerr nonlinearity and coupling strengths, the protocol can produce the NOON state with high fidelity in the cases of different photon numbers. In addition, it is possible for the protocol to produce acceptable fidelity in the presence of systematic errors and decoherence factors. Therefore, the protocol may provide some useful perspectives for effective generation of photonic NOON states.
我们提出了一种用于生成谐振器模式的NOON态的协议。物理模型由两个克尔非线性谐振器和一个四能级量子位组成。利用谐振器与量子位之间的非共振耦合,在两个谐振器上诱导出与量子位能级相关的频移。当量子位处于不同的中间能级时,频移使我们能够将不同的谐振器驱动到N光子态。因此,仅通过三个步骤就可以完成任意光子数N的NOON态的生成,即,将量子位驱动到两个中间能级的叠加态,将其中一个谐振器驱动到其N光子态,然后将量子位驱动回其基态。数值模拟表明,在强克尔非线性和耦合强度的情况下,该协议在不同光子数的情况下都能以高保真度产生NOON态。此外,该协议在存在系统误差和退相干因素的情况下也有可能产生可接受的保真度。因此,该协议可能为有效生成光子NOON态提供一些有用的见解。