We study the properties of eigenstates of an operating quantum computer which simulates the dynamical evolution in the regime of quantum chaos. Even if the quantum algorithm is polynomial in number of qubits nq, it is shown that the ideal eigenstates become mixed and strongly modified by static imperfections above a certain threshold which drops exponentially with nq. Above this threshold the quantum eigenstate entropy grows linearly with nq but the computation remains reliable during a time scale which is polynomial in the imperfection strength and in nq
Recent work has connected the type and rate of fidelity decay in some quantum models to the presence...
We study quantum chaos in open dynamical systems and show that it is characterized byquantum fractal...
We discuss the quantum algorithms simulating complex dynamics on quantum computers in presence of im...
We study the effects of dynamical imperfections in quantum computers. By considering an explicit exa...
We determine the universal law for fidelity decay in quantum computations of complex dynamics in pre...
We model the quantum computer hardware as a two-dimensional lattice of qubits with static imperfecti...
The standard generic quantum computer model is studied analytically and numerically and the border f...
We study the effects of imperfections in a spin model of a quantum computer. We identify different r...
We analyze the stability of a quantum algorithm simulating the quantum dynamics of a system with dif...
The simulation of complex quantum systems on a quantum computer is studied, taking the kicked Harper...
Recently, the question of a relevance of the so-called quantum chaos has been raised in applications...
We study the effects of dissipation or leakage on the time evolution of Grover's algorithm for a qua...
In this talk I will review basic notions of classical and quantum chaos in single particle systems a...
Recent years have seen rapid progress in the field of quantum algorithms for linear algebra problems...
Many quantum computations can be roughly broken down in-to two stages: read-in and processing of the...
Recent work has connected the type and rate of fidelity decay in some quantum models to the presence...
We study quantum chaos in open dynamical systems and show that it is characterized byquantum fractal...
We discuss the quantum algorithms simulating complex dynamics on quantum computers in presence of im...
We study the effects of dynamical imperfections in quantum computers. By considering an explicit exa...
We determine the universal law for fidelity decay in quantum computations of complex dynamics in pre...
We model the quantum computer hardware as a two-dimensional lattice of qubits with static imperfecti...
The standard generic quantum computer model is studied analytically and numerically and the border f...
We study the effects of imperfections in a spin model of a quantum computer. We identify different r...
We analyze the stability of a quantum algorithm simulating the quantum dynamics of a system with dif...
The simulation of complex quantum systems on a quantum computer is studied, taking the kicked Harper...
Recently, the question of a relevance of the so-called quantum chaos has been raised in applications...
We study the effects of dissipation or leakage on the time evolution of Grover's algorithm for a qua...
In this talk I will review basic notions of classical and quantum chaos in single particle systems a...
Recent years have seen rapid progress in the field of quantum algorithms for linear algebra problems...
Many quantum computations can be roughly broken down in-to two stages: read-in and processing of the...
Recent work has connected the type and rate of fidelity decay in some quantum models to the presence...
We study quantum chaos in open dynamical systems and show that it is characterized byquantum fractal...
We discuss the quantum algorithms simulating complex dynamics on quantum computers in presence of im...