International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitational fields are studied analytically and numerically. The analytical computations are carried by a new method which allows a direct exact analytical determination of the equations of motion obeyed by the average density operator. It is proven that randomness induces decoherence and that the quantum walks behave asymptotically like classical random walks. Asymptotic diffusion coefficients are computed exactly. The continuous limit is also obtained and discussed
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum walks, the quantum mechanical counterpart of classical random walks, is an advanced tool for...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
Funding Information: The authors acknowledge the Academy of Finland for support (Grant No. 331094). ...
Quantum walks are powerful tools not only for constructing the quantum speedup algorithms but also f...
Summarization: The role of classical noise in quantum walks (QW) on integers is investigated in the ...
The quantum random walk has been much studied recently, largely due to its highly nonclassical behav...
The role of classical noise in quantum walks (QW) on integers is investigated in the form of discret...
The behaviors of one-dimensional quantum random walks are strikingly different from those of classic...
The quantum random walk (QRW) is a new microscopic model for diffusion in a one-dimensional lattice....
We analyze several families of one and two-dimensional nearest neighbor Quantum Random Walks. Using ...
We analyze several families of one and two-dimensional nearest neighbor Quantum Random Walks. Using ...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum walks, the quantum mechanical counterpart of classical random walks, is an advanced tool for...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
International audienceDiscrete-time quantum walks (DTQWs) in random artificial electric and gravitat...
Funding Information: The authors acknowledge the Academy of Finland for support (Grant No. 331094). ...
Quantum walks are powerful tools not only for constructing the quantum speedup algorithms but also f...
Summarization: The role of classical noise in quantum walks (QW) on integers is investigated in the ...
The quantum random walk has been much studied recently, largely due to its highly nonclassical behav...
The role of classical noise in quantum walks (QW) on integers is investigated in the form of discret...
The behaviors of one-dimensional quantum random walks are strikingly different from those of classic...
The quantum random walk (QRW) is a new microscopic model for diffusion in a one-dimensional lattice....
We analyze several families of one and two-dimensional nearest neighbor Quantum Random Walks. Using ...
We analyze several families of one and two-dimensional nearest neighbor Quantum Random Walks. Using ...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum random walk in a two-dimensional lattice with randomly distributed traps is investigated. Di...
Quantum walks, the quantum mechanical counterpart of classical random walks, is an advanced tool for...