Efficient Coherent Control by Optimized Sequences of Pulses of Finite Duration

Abstract

Reliable long-time storage of arbitrary quantum states is a key element for quantum information processing. In order to dynamically decouple a spin or quantum bit from a dephasing environment, we introduce an optimized sequence of N control pulses of finite durations τ and finite amplitudes. The properties of this sequence of length T stem from a mathematically rigorous derivation. Corrections occur only in order TN+1 and τ3 without mixed terms such as TNτ or TNτ2. Based on existing experiments, a concrete setup for the verification of the properties of the advocated realistic sequence is proposed.

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