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高 Q 谐振器中的带宽限制控制和振铃抑制。

Bandwidth-limited control and ringdown suppression in high-Q resonators.

机构信息

Department of Nuclear Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

J Magn Reson. 2012 Dec;225:120-9. doi: 10.1016/j.jmr.2012.10.011. Epub 2012 Oct 31.

Abstract

We describe how the transient behavior of a tuned and matched resonator circuit and a ringdown suppression pulse may be integrated into an optimal control theory (OCT) pulse-design algorithm to derive control sequences with limited ringdown that perform a desired quantum operation in the presence of resonator distortions of the ideal waveform. Inclusion of ringdown suppression in numerical pulse optimizations significantly reduces spectrometer deadtime when using high quality factor (high-Q) resonators, leading to increased signal-to-noise ratio (SNR) and sensitivity of inductive measurements. To demonstrate the method, we experimentally measure the free-induction decay of an inhomogeneously broadened solid-state free radical spin system at high Q. The measurement is enabled by using a numerically optimized bandwidth-limited OCT pulse, including ringdown suppression, robust to variations in static and microwave field strengths. We also discuss the applications of pulse design in high-Q resonators to universal control of anisotropic-hyperfine coupled electron-nuclear spin systems via electron-only modulation even when the bandwidth of the resonator is significantly smaller than the hyperfine coupling strength. These results demonstrate how limitations imposed by linear response theory may be vastly exceeded when using a sufficiently accurate system model to optimize pulses of high complexity.

摘要

我们描述了如何将调谐和匹配的谐振器电路的瞬态行为以及衰减抑制脉冲集成到最优控制理论(OCT)脉冲设计算法中,以导出具有有限衰减的控制序列,从而在存在理想波形的谐振器失真的情况下执行所需的量子操作。在使用高品质因数(高 Q)谐振器进行数值脉冲优化时,包含衰减抑制可显著降低光谱仪的死区时间,从而提高信号噪声比(SNR)和电感测量的灵敏度。为了演示该方法,我们在高 Q 下实验测量了非均匀展宽固态自由基自旋系统的自由感应衰减。该测量是通过使用数值优化的带宽限制 OCT 脉冲来实现的,该脉冲包括衰减抑制,对静态和微波场强的变化具有鲁棒性。我们还讨论了在高 Q 谐振器中脉冲设计的应用,即使谐振器的带宽明显小于超精细耦合强度,通过仅电子调制也可以对各向异性超精细耦合电子-核自旋系统进行通用控制。这些结果表明,当使用足够准确的系统模型来优化高复杂度的脉冲时,线性响应理论施加的限制可以大大超出。

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