Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powerful tool for simulating quantum information and transport systems. We present a flexible implementation of a two-dimensional (2D) optical quantum walk on a lattice, demonstrating a scalable quantum walk on a nontrivial graph structure. We realized a coherent quantum walk over 12 steps and 169 positions by using an optical fiber network. With our broad spectrum of quantum coins, we were able to simulate the creation of entanglement in bipartite systems with conditioned interactions. Introducing dynamic control allowed for the investigation of effects such as strong nonlinearities or two-particle scattering. Our results illustrate the potentia...
Multi-photon quantum walks on integrated circuits are emonstrated, showing non-classical correlation...
We demonstrate a platform for implementing quantum walks that overcomes many of the barriers associa...
Quantum walks are powerful tools for quantum applications and for designing topological systems. Alt...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
We present an experimental implementation of a quantum walk in two dimensions, employing an optical ...
We present an experimental implementation of a quantum walk in two dimensions, employing an optical ...
We present the experimental implementation of a quantum walk on a two-dimensional lattice and show h...
We show that with the addition of multiple walkers, quantum walks on a line can be transformed into ...
We show that with the addition of multiple walkers, quantum walks on a line can be transformed into ...
The "quantum walk" has emerged recently as a paradigmatic process for the dynamic simulation of comp...
Quantum walks are the quantum mechanical analog to classical random walks. However, due to the wavel...
Quantum walks represent paradigmatic quantum evolutions, enabling powerful applications in the conte...
Multi-photon quantum walks on integrated circuits are emonstrated, showing non-classical correlation...
We demonstrate a platform for implementing quantum walks that overcomes many of the barriers associa...
Quantum walks are powerful tools for quantum applications and for designing topological systems. Alt...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
We present an experimental implementation of a quantum walk in two dimensions, employing an optical ...
We present an experimental implementation of a quantum walk in two dimensions, employing an optical ...
We present the experimental implementation of a quantum walk on a two-dimensional lattice and show h...
We show that with the addition of multiple walkers, quantum walks on a line can be transformed into ...
We show that with the addition of multiple walkers, quantum walks on a line can be transformed into ...
The "quantum walk" has emerged recently as a paradigmatic process for the dynamic simulation of comp...
Quantum walks are the quantum mechanical analog to classical random walks. However, due to the wavel...
Quantum walks represent paradigmatic quantum evolutions, enabling powerful applications in the conte...
Multi-photon quantum walks on integrated circuits are emonstrated, showing non-classical correlation...
We demonstrate a platform for implementing quantum walks that overcomes many of the barriers associa...
Quantum walks are powerful tools for quantum applications and for designing topological systems. Alt...