2 citations · 3 across the 6 of their papers we have counts for
4 papers · 1 filter
Perturbation Approach for a Solid-State Quantum Computation
G. P. Berman, D. I. Kamenev, V. I. Tsifrinovich
The dynamics of the nuclear-spin quantum computer with large number (L=1000) of qubits is considered using a perturbation approach, based on approximate diagonalization of exponent…
Perturbation Theory and Numerical Modeling of Quantum Logic Operations with a Large Number of Qubits
G. P. Berman, G. D. Doolen, D. I. Kamenev +2
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…
Control of Non-Resonant Effects in a Nuclear Spin Quantum Computer with a Large Number of Qubits
G. P. Berman, G. D. Doolen, D. I. Kamenev +1
We discuss how to simulate simple quantum logic operations with a large number of qubits. These simulations are needed for experimental testing of scalable solid-state quantum comp…
Formation and Dynamics of a Schrödinger-Cat State in Continuous Quantum Measurement
G. P. Berman, F. Borgonovi, G. Chapline +5
We consider the process of a single-spin measurement using magnetic resonance force microscopy (MRFM) as an example of a truly continuous measurement in quantum mechanics. This tec…