Summarization: The role of classical noise in quantum walks (QW) on integers is investigated in the form of discrete dichotomic random variable affecting its reshuffling matrix parametrized as a SU2)/U (1) coset element. Analysis in terms of quantum statistical moments and generating functions, derived by the completely positive trace preserving (CPTP) map governing evolution, reveals a pronounced eventual transition in walk's diffusion mode, from a quantum ballistic regime with rate O(t) to a classical diffusive regime with rate View the MathML source, when condition (strength of noise parameter)2 × (number of steps) = 1, is satisfied. The role of classical randomness is studied showing that the randomized QW, when treated on the stochas...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
In the framework of quantum open systems, that is, simple quantum systems coupled to quantum baths, ...
The role of classical noise in quantum walks (QW) on integers is investigated in the form of discret...
The effect of unitary noise on the discrete one-dimensional quantum walk is studied using computer s...
Open Access.The classicalization of a decoherent discrete-time quantum walk on a line or an n-cycle ...
The effect of unitary noise on the discrete one-dimensional quantum walk is studied using computer s...
Quantum walks are powerful tools not only for constructing the quantum speedup algorithms but also f...
Funding Information: The authors acknowledge the Academy of Finland for support (Grant No. 331094). ...
Random walks are fundamental models of stochastic processes with applications in various fields, inc...
Quantum walks, the quantum mechanical counterpart of classical random walks, is an advanced tool for...
The present paper gives a rigorous way from quantum to classical for quantum walks by introducing an...
One can view quantum mechanics as a generalization of classical probability theory that provides for...
The quantum random walk has been much studied recently, largely due to its highly nonclassical behav...
Quantum versions of random walks on the line and the cycle show a quadratic improvement over classic...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
In the framework of quantum open systems, that is, simple quantum systems coupled to quantum baths, ...
The role of classical noise in quantum walks (QW) on integers is investigated in the form of discret...
The effect of unitary noise on the discrete one-dimensional quantum walk is studied using computer s...
Open Access.The classicalization of a decoherent discrete-time quantum walk on a line or an n-cycle ...
The effect of unitary noise on the discrete one-dimensional quantum walk is studied using computer s...
Quantum walks are powerful tools not only for constructing the quantum speedup algorithms but also f...
Funding Information: The authors acknowledge the Academy of Finland for support (Grant No. 331094). ...
Random walks are fundamental models of stochastic processes with applications in various fields, inc...
Quantum walks, the quantum mechanical counterpart of classical random walks, is an advanced tool for...
The present paper gives a rigorous way from quantum to classical for quantum walks by introducing an...
One can view quantum mechanics as a generalization of classical probability theory that provides for...
The quantum random walk has been much studied recently, largely due to its highly nonclassical behav...
Quantum versions of random walks on the line and the cycle show a quadratic improvement over classic...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
In the framework of quantum open systems, that is, simple quantum systems coupled to quantum baths, ...