Quantum versions of random walks on the line and cycle show a quadratic improvement in their spreading rate and mixing times respectively. The addition of decoherence to the quantum walk produces a more uniform distribution on the line, and even faster mixing on the cycle by removing the need for time-averaging to obtain a uniform distribution. We calculate numerically the entanglement between the coin and the position of the quantum walker and show that the optimal decoherence rates are such that all the entanglement is just removed by the time the final measurement is made
In discrete time, coined quantum walks, the coin degrees of freedom offer the potential for a wider ...
We discuss decoherence in discrete-time quantum walks in terms of a phenomenological model that dist...
AbstractQuantum versions of random walks on the line and the cycle show a quadratic improvement over...
Quantum versions of random walks on the line and cycle show a quadratic improvement in their spreadi...
Quantum versions of random walks on the line and cycle show a quadratic improvement in their spreadi...
Quantum versions of random walks on the line and the cycle show a quadratic improvement over classic...
Quantum walks, both discrete (coined) and continuous time, form the basis of several recent quantum ...
The development of quantum walks in the context of quantum computation, as generalisations of random...
The quantum random walk has been much studied recently, largely due to its highly nonclassical behav...
We devise a protocol to build 1D time-dependent quantum walks in 1D maximizing the spatial spread t...
We have studied how decoherence affects a quantum walk on the line. As expected, it is highly sensit...
Although quantum walks exhibit peculiar properties that distinguish them from random walks, classica...
Open Access.The classicalization of a decoherent discrete-time quantum walk on a line or an n-cycle ...
We investigate quantum walks in multiple dimensions with different quantum coins. We augment the mod...
Disorder in coined quantum walks generally leads to localization. We investigate the influence of th...
In discrete time, coined quantum walks, the coin degrees of freedom offer the potential for a wider ...
We discuss decoherence in discrete-time quantum walks in terms of a phenomenological model that dist...
AbstractQuantum versions of random walks on the line and the cycle show a quadratic improvement over...
Quantum versions of random walks on the line and cycle show a quadratic improvement in their spreadi...
Quantum versions of random walks on the line and cycle show a quadratic improvement in their spreadi...
Quantum versions of random walks on the line and the cycle show a quadratic improvement over classic...
Quantum walks, both discrete (coined) and continuous time, form the basis of several recent quantum ...
The development of quantum walks in the context of quantum computation, as generalisations of random...
The quantum random walk has been much studied recently, largely due to its highly nonclassical behav...
We devise a protocol to build 1D time-dependent quantum walks in 1D maximizing the spatial spread t...
We have studied how decoherence affects a quantum walk on the line. As expected, it is highly sensit...
Although quantum walks exhibit peculiar properties that distinguish them from random walks, classica...
Open Access.The classicalization of a decoherent discrete-time quantum walk on a line or an n-cycle ...
We investigate quantum walks in multiple dimensions with different quantum coins. We augment the mod...
Disorder in coined quantum walks generally leads to localization. We investigate the influence of th...
In discrete time, coined quantum walks, the coin degrees of freedom offer the potential for a wider ...
We discuss decoherence in discrete-time quantum walks in terms of a phenomenological model that dist...
AbstractQuantum versions of random walks on the line and the cycle show a quadratic improvement over...