arXiv · 1107.4927
Nonadiabatic quantum control of a semiconductor charge qubit
Abstract
We demonstrate multipulse quantum control of a single electron charge qubit. The qubit is manipulated by applying nonadiabatic voltage pulses to a surface depletion gate and readout is achieved using a quantum point contact charge sensor. We observe Ramsey fringes in the excited state occupation in response to a pi/2 - pi/2 pulse sequence and extract T2* ~ 60 ps away from the charge degeneracy point. Simulations suggest these results may be extended to implement a charge-echo by reducing the interdot tunnel coupling and pulse rise time, thereby increasing the nonadiabaticity of the pulses.
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Y. Dovzhenko, J. Stehlik, K. D. Petersson, J. R. Petta, H. Lu, A. C. Gossard. 2011-07-25. Nonadiabatic quantum control of a semiconductor charge qubit. https://doi.org/10.1103/physrevb.84.161302
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