The perturbation theory is developed based on small parameters which naturally appear in solid state quantum computation. We report the simulations of the dynamics of quantum logic operations with a large number of qubits (up to 1000). A nuclear spin chain is considered in which selective excitations of spins are provided by having a uniform gradient of the external magnetic field. Quantum logic operations are utilized by applying resonant electromagnetic pulses. The spins interact with their nearest neighbors. We simulate the creation of the long-distance entanglement between remote qubits in the spin chain. Our method enables us to minimize unwanted non-resonant effects in a controlled way. The method we use cannot simulate complicated qu...
We propose a quantum algorithm which uses the number of qubits in an optimal way and efficiently sim...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We report the first simulations of the dynamics of quantum logic operations with a large number of q...
We describe a new and consistent perturbation theory for solid-state quantum computation with many q...
We report the simulations of the dynamics of quantum-logic operations with large number of qubits (u...
We discuss how to simulate simple quantum logic operations with a large number of qubits. These simu...
We discuss how to simulate errors in the implementation of simple quantum logic operations in a nucl...
A dynamics of a nuclear-spin quantum computer with a large number (L = 1000) of qubits is considered...
A dynamics of a nuclear-spin quantum computer with a large number (L = 1000) of qubits is considered...
Each year, the gap between theoretical proposals and experimental endeavours to create quantum compu...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
Approximation based on perturbation theory is the foundation for most of the quantitative prediction...
We propose a quantum algorithm which uses the number of qubits in an optimal way and efficiently sim...
We propose a quantum algorithm which uses the number of qubits in an optimal way and efficiently sim...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We report the first simulations of the dynamics of quantum logic operations with a large number of q...
We describe a new and consistent perturbation theory for solid-state quantum computation with many q...
We report the simulations of the dynamics of quantum-logic operations with large number of qubits (u...
We discuss how to simulate simple quantum logic operations with a large number of qubits. These simu...
We discuss how to simulate errors in the implementation of simple quantum logic operations in a nucl...
A dynamics of a nuclear-spin quantum computer with a large number (L = 1000) of qubits is considered...
A dynamics of a nuclear-spin quantum computer with a large number (L = 1000) of qubits is considered...
Each year, the gap between theoretical proposals and experimental endeavours to create quantum compu...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
Approximation based on perturbation theory is the foundation for most of the quantitative prediction...
We propose a quantum algorithm which uses the number of qubits in an optimal way and efficiently sim...
We propose a quantum algorithm which uses the number of qubits in an optimal way and efficiently sim...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...
We describe a simulation approach to study the functioning of Quantum Computer hardware. The latter ...