We demonstrate a platform for implementing quantum walks that overcomes many of the barriers associated with photonic implementations. We use coupled fiber-optic cavities to implement time-bin encoded walks in an integrated system. We show that this platform can achieve very low losses combined with high-fidelity operations, enabling an unprecedented large number of steps in a passive system, as required for scenarios with multiple walkers. Furthermore the platform is reconfigurable, enabling variation of the coin, and readily extends to multidimensional lattices. We demonstrate variation of the coin bias experimentally for three different values
In a Quantum Walk (QW) the “walker” follows all possible paths at once through the principle of quan...
Light is a fascinating medium. It is interesting on its own but is equally well suited to be the too...
© 2014 AIP Publishing LLC. We present the experimental implementation of a quantum walk on a two-dim...
We demonstrate a platform for implementing quantum walks that overcomes many of the barriers associa...
We present the first robust implementation of a coined quantum walk over five steps using only passi...
We present the first robust implementation of a coined quantum walk over five steps using only passi...
We present a flexible and robust system for implementing one-dimensional coined quantum walks. A rec...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
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...
In a Quantum Walk (QW) the "walker" follows all possible paths at once through the principle of quan...
Multiphoton propagation in connected structures—a quantum walk—offers the potential of simulating co...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...
In a Quantum Walk (QW) the “walker” follows all possible paths at once through the principle of quan...
Light is a fascinating medium. It is interesting on its own but is equally well suited to be the too...
© 2014 AIP Publishing LLC. We present the experimental implementation of a quantum walk on a two-dim...
We demonstrate a platform for implementing quantum walks that overcomes many of the barriers associa...
We present the first robust implementation of a coined quantum walk over five steps using only passi...
We present the first robust implementation of a coined quantum walk over five steps using only passi...
We present a flexible and robust system for implementing one-dimensional coined quantum walks. A rec...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
Multidimensional quantum walks can exhibit highly nontrivial topological structure, providing a powe...
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...
In a Quantum Walk (QW) the "walker" follows all possible paths at once through the principle of quan...
Multiphoton propagation in connected structures—a quantum walk—offers the potential of simulating co...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...
Quantum walks of correlated particles offer the possibility of studying large-scale quantum interfer...
In a Quantum Walk (QW) the “walker” follows all possible paths at once through the principle of quan...
Light is a fascinating medium. It is interesting on its own but is equally well suited to be the too...
© 2014 AIP Publishing LLC. We present the experimental implementation of a quantum walk on a two-dim...