We present a quantum cellular automaton model in one space-dimension which has the Dirac equation as emergent. This model, a discrete-time and causal unitary evolution of a lattice of quantum systems, is derived from the assumptions of homogeneity, parity and time-reversal invariance. The comparison between the automaton and the Dirac evolutions is rigorously set as a discrimination problem between unitary channels. We derive an exact lower bound for the probability of error in the discrimination as an explicit function of the mass, the number and the momentum of the particles, and the duration of the evolution. Computing this bound with experimentallly achievable values, we see that in that regime the QCA model cannot be discriminated f...
Without using the relativity principle, we show how the Dirac equation in three space dimensions eme...
International audienceAbstract We build a quantum cellular automaton (QCA) which coincides with $$1+...
International audienceAbstract We build a quantum cellular automaton (QCA) which coincides with $$1+...
We present a quantum cellular automaton model in one space-dimension which has the Dirac equation as...
A natural architecture for nanoscale quantum computation is that of a quantum cellular automaton. Mo...
We study the dynamical behavior of a quantum cellular automaton which reproduces the Dirac dynamics ...
Quantum cellular automata, which describe the discrete and exactly causal unitary evolution of a lat...
Quantum cellular automata, which describe the discrete and exactly causal unitary evolution of a lat...
We briefly review the derivation from first principles of the quantum cellular automata, from which ...
A certain class of cellular automata in 1 space + 1 time dimension is shown to be closely related to...
A discretized time evolution of the wave function for a Dirac particle on a cubic lattice is represe...
We show that the Dirac quantum cellular automaton [A. Bisio, G. M. D'Ariano, and A. Tosini, Ann. Phy...
Can we reduce Quantum Field Theory (QFT) to a quantum computation? Can physics be simulated by a qua...
Can we reduce Quantum Field Theory (QFT) to a quantum computation? Can physics be simulated by a qua...
Without using the relativity principle, we show how the Dirac equation in three space dimensions eme...
Without using the relativity principle, we show how the Dirac equation in three space dimensions eme...
International audienceAbstract We build a quantum cellular automaton (QCA) which coincides with $$1+...
International audienceAbstract We build a quantum cellular automaton (QCA) which coincides with $$1+...
We present a quantum cellular automaton model in one space-dimension which has the Dirac equation as...
A natural architecture for nanoscale quantum computation is that of a quantum cellular automaton. Mo...
We study the dynamical behavior of a quantum cellular automaton which reproduces the Dirac dynamics ...
Quantum cellular automata, which describe the discrete and exactly causal unitary evolution of a lat...
Quantum cellular automata, which describe the discrete and exactly causal unitary evolution of a lat...
We briefly review the derivation from first principles of the quantum cellular automata, from which ...
A certain class of cellular automata in 1 space + 1 time dimension is shown to be closely related to...
A discretized time evolution of the wave function for a Dirac particle on a cubic lattice is represe...
We show that the Dirac quantum cellular automaton [A. Bisio, G. M. D'Ariano, and A. Tosini, Ann. Phy...
Can we reduce Quantum Field Theory (QFT) to a quantum computation? Can physics be simulated by a qua...
Can we reduce Quantum Field Theory (QFT) to a quantum computation? Can physics be simulated by a qua...
Without using the relativity principle, we show how the Dirac equation in three space dimensions eme...
Without using the relativity principle, we show how the Dirac equation in three space dimensions eme...
International audienceAbstract We build a quantum cellular automaton (QCA) which coincides with $$1+...
International audienceAbstract We build a quantum cellular automaton (QCA) which coincides with $$1+...