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Decoherence of quantum states and its suppression in ensemble large-scale solid state NMR quantum computers

机译:Quantum状态的破解及其在集合大规模固态NMR量子计算机中的抑制

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It is discussed the decoherence problems in ensemble large-scale solid state NMR quantum computer based on the array of ~(31)P donor atoms having nuclear spin I = 1/2. It is considered here, as main mechanisms of decoherence for low temperature (< 0.1K), the adiabatic processes of random modulation of qubit resonance frequency determined by secular part of nuclear spin interaction with electron spin of the basic atoms, with impurity paramagnetic atoms and also with nuclear spins of impurity diamagnetic atoms. It was made estimations of allowed concentrations of magnetic impurities and of spin temperature whereby the required decoherence suppression is obtained. It is discussed the random phase error suppression in the ensemble quantum register basic states.
机译:讨论基于核旋转核旋转〜1/2的〜(31)p供体原子阵列的集合大规模固态NMR量子计算机中的脱机问题。这里被认为是低温(<0.1k)的脱机机制,随机调制的绝热过程由核自旋相互作用的核自旋相互作用的核旋转频率确定,杂质顺从原子和杂质同样具有核旋转的杂质抗磁原子。估计允许浓度的磁性杂质和旋转温度,从而获得所需的脱机抑制。讨论集合量子寄存器基本状态中的随机相位误差抑制。

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