论文标题
线性光学元件的进料提升增强的Fock状态转换
Feedforward-enhanced Fock state conversion with linear optics
论文作者
论文摘要
在绝大多数光子量子技术应用中,工程量子量子代表了至关重要的任务。直接操纵光信号中的光子数量,例如单光子减法和加法,被证明是任务的有效策略。在这里,我们提出了一种自适应多次减法方案,其中特定的减法任务均由所有先前的减法事件进行调节,以最大程度地提高成功减法的概率。从理论上讲,我们在通过光子减法的模型示例上说明了这一技术。我们还通过实现将两光子状态的馈电辅助转换为单光子状态,在实验中证明了该提案的核心构件。我们的实验结合了两个基本光子减法块,其中第二个减法束分离器的分裂比受到第一个减法块的测量结果的影响,使用超快速的前馈环实时。报道的优化光子减法方案适用于广泛的光子状态,包括高度非经典的Fock状态和挤压光,从而推进了光子量子工具箱。
Engineering quantum states of light represents a crucial task in the vast majority of photonic quantum technology applications. Direct manipulation of the number of photons in the light signal, such as single-photon subtraction and addition, proved to be an efficient strategy for the task. Here we propose an adaptive multi-photon subtraction scheme where a particular subtraction task is conditioned by all previous subtraction events in order to maximize the probability of successful subtraction. We theoretically illustrate this technique on the model example of conversion of Fock states via photon subtraction. We also experimentally demonstrate the core building block of the proposal by implementing a feedforward-assisted conversion of two-photon state to a single-photon state. Our experiment combines two elementary photon subtraction blocks where the splitting ratio of the second subtraction beam splitter is affected by the measurement result from the first subtraction block in real time using an ultra-fast feedforward loop. The reported optimized photon subtraction scheme applies to a broad range of photonic states, including highly nonclassical Fock states and squeezed light, advancing the photonic quantum toolbox.