论文标题

2D合成晶格中的两个相关光子的量子步行

Quantum walks of two correlated photons in a 2D synthetic lattice

论文作者

Esposito, Chiara, Barros, Mariana R., Hernández, Andrés Durán, Carvacho, Gonzalo, Di Colandrea, Francesco, Barboza, Raouf, Cardano, Filippo, Spagnolo, Nicolò, Marrucci, Lorenzo, Sciarrino, Fabio

论文摘要

量子步行代表范式量子的演变,在拓扑物理和量子计算的背景下实现了强大的应用。它们已经在各种光子体系结构中实现,但是在多维晶格上实现了两粒子动力学,迄今已限于连续的时间演变。为了充分利用量子干扰的计算能力,开发处理多个光子在多维晶格中传播的平台至关重要。在这里,我们报告了在二维晶格中进行的两个相关光子的离散时间量子步行,该晶格通过操纵一组携带量化量的横向动量的光学模式来合成设计。模式耦合是通过薄几何相光元素的极化控制的衍射作用引入的。整个平台都是紧凑,高效,可扩展的,并且代表了模拟复杂晶格上量子进化的多功能工具。我们预计它将对诸如量子状态工程,拓扑量子光子学和玻色子采样等各个领域产生强大的影响。

Quantum walks represent paradigmatic quantum evolutions, enabling powerful applications in the context of topological physics and quantum computation. They have been implemented in diverse photonic architectures, but the realization of a two-particle dynamics on a multi-dimensional lattice has hitherto been limited to continuous-time evolutions. To fully exploit the computational capabilities of quantum interference it is crucial to develop platforms handling multiple photons that propagate across multi-dimensional lattices. Here, we report a discrete-time quantum walk of two correlated photons in a two-dimensional lattice, synthetically engineered by manipulating a set of optical modes carrying quantized amounts of transverse momentum. Mode-couplings are introduced via the polarization-controlled diffractive action of thin geometric-phase optical elements. The entire platform is compact, efficient, scalable, and represents a versatile tool to simulate quantum evolutions on complex lattices. We expect that it will have a strong impact on diverse fields such as quantum state engineering, topological quantum photonics, and Boson Sampling.

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