Low perturbation limit decoherence analyzed by scaling the Double Quantum Hamiltonian

C.M. Sánchez, H.M. Pastawski, A.K. Chattah
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Abstract

By varying the magnitude of the effective interaction between spins in relation to the perturbations, we study the decoherence behavior in a connected proton system. Making use of the Magnus expansion, we introduce a NMR pulse sequence that generates an average Hamiltonian with Double Quantum terms multiplied by a scaling factor, δ, with the possibility to take positive and negative values. The performance of the pulse sequence for different values of the scaling factors was validated in polycrystalline adamantane, by observing the evolution of the polarization. A time reversal procedure, accessible through the change of sign in the controlled Hamiltonian, was necessary to observe multiple quantum coherences. The spin counting develops a characteristic growth in two species of clusters for the scaled time. The influence of the scaling factor on the reversibility was observed through the behavior of the Loschmidt echoes, which decayed faster as the scaling factor increases. From the analysis of dynamics and its reversibility, we extracted characteristic times for the spin diffusion, T2δ and the intrinsic decoherence decay, T3δ for each scaling factor δ, and perturbation time scale, TΣ. Observing the dependence of reversibility vs. perturbation rates, both normalized with the spin diffusion rate, we find that in the limit of low perturbations, T2δ/T3δ deviates from the linear dependence on T2δ/TΣ that corresponds to strong perturbation. The asymptotic value T2/T30.15 as T2δ/TΣ vanishes, gives evidence that the main source of irreversibility is the intrinsic decoherence associated to the chaotic many-body dynamics of the system.

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用缩放双量子哈密顿量分析低摄动极限退相干
通过改变自旋与微扰之间有效相互作用的大小,我们研究了连接质子系统中的退相干行为。利用Magnus展开,我们引入了一个核磁共振脉冲序列,该序列生成一个双量子项乘以比例因子δ的平均哈密顿量,可以取正值和负值。通过观察多晶金刚烷的极化演变,验证了不同比例系数下脉冲序列的性能。时间反转程序,可通过改变符号控制的哈密顿,是必要的,以观察多个量子相干。自旋计数在两种团簇中呈现出随时间尺度的特征性增长。比例因子对可逆性的影响是通过Loschmidt回波的行为来观察的,随着比例因子的增加,Loschmidt回波衰减得更快。从动力学及其可逆性分析中,我们提取了自旋扩散的特征时间T2δ和各比例因子δ的本征退相干衰变的特征时间T3δ和摄动时间尺度TΣ。观察可逆性与扰动速率的依赖关系,两者都与自旋扩散速率归一化,我们发现在低扰动的极限下,T2δ/T3δ偏离了对T2δ/TΣ的线性依赖关系,这对应于强扰动。随着T2δ/TΣ的消失,渐近值T2/T3≈0.15证明了不可逆性的主要来源是与系统混沌多体动力学相关的本征退相干。
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