论文标题

来自四极$^{73} $ ge的磁性梯度波动,仅si/sige交换量子

Magnetic Gradient Fluctuations from Quadrupolar $^{73}$Ge in Si/SiGe Exchange-Only Qubits

论文作者

Kerckhoff, J., Sun, B., Fong, B. H., Jones, C., Kiselev, A. A., Barnes, D. W., Noah, R. S., Acuna, E., Akmal, M., Ha, S. D., Wright, J. A., Thomas, B. J., Jackson, C. A. C., Edge, L. F., Eng, K., Ross, R. S., Ladd, T. D.

论文摘要

我们使用交换回声噪声光谱研究研究了成对的Si/Sige量子点中的时触发磁梯度噪声机制。我们通过频谱反演和与理论建模的对应关系发现,$^{73} $ ge nuclei的四极动力在自旋回波衰减时间$ t_2 $中起着关键作用,具有对磁场的特征依赖性和SI量子良好的宽度。 $^{73} $ ge噪声峰出现在$^{73} $ ge larmor共振的基本和第一个谐波上,由于$^{29} $^{29} $ si Dipole-dipole动力学而被叠加到$ 1/f $噪声上,并且依赖于物质表现和应用磁场。这些结果可能会为使用Si/Sige量子点作为量子信息处理设备中的Qubits时的动态解耦需求。

We study the time-fluctuating magnetic gradient noise mechanisms in pairs of Si/SiGe quantum dots using exchange echo noise spectroscopy. We find through a combination of spectral inversion and correspondence to theoretical modeling that quadrupolar precession of the $^{73}$Ge nuclei play a key role in the spin-echo decay time $T_2$, with a characteristic dependence on magnetic field and the width of the Si quantum well. The $^{73}$Ge noise peaks appear at the fundamental and first harmonic of the $^{73}$Ge Larmor resonance, superimposed over $1/f$ noise due to $^{29}$Si dipole-dipole dynamics, and are dependent on material epitaxy and applied magnetic field. These results may inform the needs of dynamical decoupling when using Si/SiGe quantum dots as qubits in quantum information processing devices.

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