Open Access.Augmenting the unitary transformation which generates a quantum walk by a generalized phase gate G is a symmetry for both noisy and noiseless quantum walk on a line, in the sense that it leaves the position probability distribution invariant. However, this symmetry breaks down in the case of a quantum walk on an n cycle, and hence can be regarded as a probe of the walk topology. Noise, modeled here as phase flip and generalized amplitude damping channels, tends to restore the symmetry because it classicalizes the walk. However, symmetry restoration happens even in the regime where the walker is not entirely classical, because noise also has the effect of desensitizing the operation G to the walk topology. We discuss methods for ...
A quantum random walk on the integers exhibits pseudo memory effects, in that its probability distri...
In this research, the implementations of quantum random walks in superconducting circuit-QED are stu...
We address continuous-time quantum walks on graphs in the presence of time- and space-dependent nois...
Augmenting the unitary transformation which generates a quantum walk by a generalized phase gate G i...
Open AccessWe study some discrete symmetries of unbiased (Hadamard) and biased quantum walk on a lin...
Open Access.The classicalization of a decoherent discrete-time quantum walk on a line or an n-cycle ...
We analyze the quantum walk on a cycle using discrete Wigner functions as a way to represent the sta...
Quantum walks are discrete-time evolutions of single particles on lattices that transfer the concept...
Summarization: The role of classical noise in quantum walks (QW) on integers is investigated in the ...
Adiabatic quantum transistors (AQT) allow quantum logic gates to be performed by applying a large fi...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
We investigate the effect of amplitude and phase noise on the dynamics of a discrete-time quantum wa...
A discrete-time quantum walk on a graph is the repeated application of a unitary evolution operator ...
We quantitatively differentiate between the spreads of discrete-time quantum and classical random wa...
We analyze the quantum walk on a cycle using discrete Wigner functions as a way to represent the sta...
A quantum random walk on the integers exhibits pseudo memory effects, in that its probability distri...
In this research, the implementations of quantum random walks in superconducting circuit-QED are stu...
We address continuous-time quantum walks on graphs in the presence of time- and space-dependent nois...
Augmenting the unitary transformation which generates a quantum walk by a generalized phase gate G i...
Open AccessWe study some discrete symmetries of unbiased (Hadamard) and biased quantum walk on a lin...
Open Access.The classicalization of a decoherent discrete-time quantum walk on a line or an n-cycle ...
We analyze the quantum walk on a cycle using discrete Wigner functions as a way to represent the sta...
Quantum walks are discrete-time evolutions of single particles on lattices that transfer the concept...
Summarization: The role of classical noise in quantum walks (QW) on integers is investigated in the ...
Adiabatic quantum transistors (AQT) allow quantum logic gates to be performed by applying a large fi...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
We investigate the effect of amplitude and phase noise on the dynamics of a discrete-time quantum wa...
A discrete-time quantum walk on a graph is the repeated application of a unitary evolution operator ...
We quantitatively differentiate between the spreads of discrete-time quantum and classical random wa...
We analyze the quantum walk on a cycle using discrete Wigner functions as a way to represent the sta...
A quantum random walk on the integers exhibits pseudo memory effects, in that its probability distri...
In this research, the implementations of quantum random walks in superconducting circuit-QED are stu...
We address continuous-time quantum walks on graphs in the presence of time- and space-dependent nois...