Decoherence of a superconducting qubit due to bias noise
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- 25 March 2003
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 67 (9) , 094510
- https://doi.org/10.1103/physrevb.67.094510
Abstract
We calculate for the current-biased Josephson junction the decoherence of the qubit state from noise and dissipation. The effect of dissipation can be entirely accounted for through a semiclassical noise model that appropriately includes the effect of zero-point and thermal fluctuations from dissipation. The magnitude and frequency dependence of this dissipation can be fully evaluated with this model to obtain design constraints for small decoherence. We also calculate decoherence from spin echo and Rabi control sequences and show they are much less sensitive to low-frequency noise than for a Ramsey sequence. We predict small decoherence rates from noise of charge, critical current, and flux based on noise measurements in prior experiments. Our results indicate this system is a good candidate for a solid-state quantum computer.
Keywords
This publication has 22 references indexed in Scilit:
- Rabi Oscillations in a Large Josephson-Junction QubitPhysical Review Letters, 2002
- Coherent Temporal Oscillations of Macroscopic Quantum States in a Josephson JunctionScience, 2002
- Manipulating the Quantum State of an Electrical CircuitScience, 2002
- Decoherence and relaxation of a superconducting quantum bit during measurementPhysical Review B, 2002
- Charge Echo in a Cooper-Pair BoxPhysical Review Letters, 2002
- Decoherence in circuits of small Josephson junctionsPhysical Review B, 2001
- Time-Resolved Measurement of Dissipation-Induced Decoherence in a Josephson JunctionScience, 2001
- Quantum-state engineering with Josephson-junction devicesReviews of Modern Physics, 2001
- Spectroscopy of Energy-Level Splitting between Two Macroscopic Quantum States of Charge Coherently Superposed by Josephson CouplingPhysical Review Letters, 1997
- Experimental tests for the quantum behavior of a macroscopic degree of freedom: The phase difference across a Josephson junctionPhysical Review B, 1987