论文标题

多端口波导阵列中的多光子合成晶格:合成原子和Fock图

Multi-Photon Synthetic Lattices in Multi-Port Waveguide Arrays: Synthetic Atoms and Fock Graphs

论文作者

Tschernig, Konrad, León-Montiel, Roberto de J., Perez-Leija, Armando, Busch, Kurt

论文摘要

在物理系统的内部状态之间激活过渡已成为创建晶格和复杂网络的一种吸引人的方法。在这样的方案中,物理系统的内部状态或模式被视为抽象空间中的晶格位点或网络节点,其维度可能超过系统的明显(几何)维度。这介绍了合成维度的概念,因此为基本研究和应用提供了完全新颖的途径。在这里,我们分析表明,通过多端口波导阵列对多光子状态的传播产生了合成维度,其中单个波导系统会产生多种合成晶格。由于这些合成晶格存在于光子数空间中,因此我们介绍了伪能量的概念,并证明了其用于研究多光子干扰过程的实用性。具体而言,相关的伪能运算符的频谱生成了相关状态的独特顺序。与广义的伪能梯阶算子一起,这允许通过与合成原子相关的伪能项图来表示多光子状态的动力学。结果,伪能量表示会导致$ n $光子通过$ m $ $ $ neghbor耦合的波导传播的$ n $光子的特征系统的简洁分析表达式。在$ n> 2 $和$ m> 2 $的制度中,fock空间中的非本地耦合会导致迄今未知的全光暗状态,这些黑暗状态显示出有趣的非平凡动态。

Activating transitions between internal states of physical systems has emerged as an appealing approach to create lattices and complex networks. In such a scheme, the internal states or modes of a physical system are regarded as lattice sites or network nodes in an abstract space whose dimensionality may exceed the systems' apparent (geometric) dimensionality. This introduces the notion of synthetic dimensions, thus providing entirely novel pathways for fundamental research and applications. Here, we analytically show that the propagation of multi-photon states through multi-port waveguide arrays gives rise to synthetic dimensions where a single waveguide system generates a multitude of synthetic lattices. Since these synthetic lattices exist in photon-number space, we introduce the concept of pseudo-energy and demonstrate its utility for studying multi-photon interference processes. Specifically, the spectrum of the associated pseudo-energy operator generates a unique ordering of the relevant states. Together with generalized pseudo-energy ladder operators, this allows for representing the dynamics of multi-photon states by way of pseudo-energy term diagrams that are associated with a synthetic atom. As a result, the pseudo-energy representation leads to concise analytical expressions for the eigensystem of $N$ photons propagating through $M$ nearest-neighbor coupled waveguides. In the regime where $N>2$ and $M>2$, non-local coupling in Fock space gives rise to hitherto unknown all-optical dark states which display intriguing non-trivial dynamics.

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