CONTROL OF DECOHERENCE VIA QUANTUM ZENO SUBSPACES
Paolo Facchi, Hiromichi Nakazato, Saverio Pascazio, Shuichi Tasaki
Abstract
Paolo Facchi, Hiromichi Nakazato, Saverio Pascazio, Shuichi Tasaki
Abstract
We discuss three control strategies, whose objective is to counter the effects of decoherence: the first strategy hinges upon the quantum Zeno effect, the second makes use of frequent unitary interruptions ("bang-bang" pulses), and the third of a strong, continuous coupling. Decoherence can be suppressed only if the frequency τ-1 of the measurements/pulses is large enough or if the coupling K is sufficiently strong. Otherwise, if τ-1 or K are large, but not sufficiently large, all these control procedures accelerate decoherence.
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We discuss three control strategies, whose objective is to counter the effects of decoherence: the first strategy hinges upon the quantum Zeno effect, the second makes use of frequent unitary interruptions ("bang-bang" pulses), and the third of a strong, continuous coupling. Decoherence can be suppressed only if the frequency τ-1 of the measurements/pulses is large enough or if the coupling K is sufficiently strong. Otherwise, if τ-1 or K are large, but not sufficiently large, all these control procedures accelerate decoherence.
Key concepts: Quantum decoherence, Quantum Zeno effect, Decoherence-free subspaces, Unitary state, Coupling (piping), Physics, Linear subspace, Quantum dissipation