Short-time decoherence of Josephson charge qubits in Ohmic and 1/f noise environment
arXiv:quant-ph/0503155 · doi:10.1016/j.physc.2005.08.012
Abstract
In this paper we investigate the short-time decoherence from Ohmic and 1/f noise of single Josephson charge qubit (JCQ). At first, we use the short-time approximation to obtain the dynamics of the open JCQ. Then we calculate the decoherence the measure of which is chosen as the maximum norm of the deviation density operator. It is shown that the decoherence from 1/f noise plays the central role. The total decoherence from Ohmic and 1/f noise is serious at present experiential conditions according to the DiVincenzo criterion.
7 pages, 3 figures
References in corpus (6)
- Dephasing of solid-state qubits at optimal points
- Decoherence Rate of Semiconductor Charge Qubit Coupled to Acoustic Phonon Reservoir
- Short-Time Decoherence for General System-Environment Interactions
- Dissipation in Josephson qubits
- Short-time decoherence of Josephson charge qubit nonlinearly coupling with its environment
- Short-time decoherence of Josephson charge qubits