论文标题
高灵敏度多轴旋转使用大动量传递点源原子干涉测定法
High sensitivity multi-axes rotation sensing using large momentum transfer point source atom interferometry
论文作者
论文摘要
点源干涉仪(PSI)是一种设备,在该设备中,在膨胀的冷原子云的扩展过程中,通过施加拉曼脉冲的时间序列,将原子分开并重新组合,以大约作为点源。 PSI可以用作灵敏的多轴陀螺仪,可以自动从加速度中滤除信号。旋转产生的相移与从拉曼脉冲传递到每个原子的动量成正比。因此,通过增加动量转移,应该可以增强PSI的灵敏度。在这里,我们研究了通过使用许多带有交替方向的拉曼脉冲的序列增强PSI来增强灵敏度的程度,这可以实现。与描述PSI的典型方法相反,我们采用了一个模型,在该模型下,每个原子的质量中心的运动都被机械地描述了量子。我们展示了增加多普勒的变化如何导致缺陷,从而限制了信号条纹的可见性,并通过增加拉曼脉冲的有效的两光鼠狂犬病频率来确定抑制这种效果的方法。考虑到自发发射的效果,我们表明,对于单光兔频率的给定值,使用的脉冲数量有最佳值,除此之外,灵敏度的净增强开始降低。例如,对于200 MHz的单光子RABI频率,灵敏度增强因子的峰值为〜39,对于传统PSI来说,动量转移的大约69倍。我们还发现,该峰值尺度缩放为4/5的功率。
A point source interferometer (PSI) is a device where atoms are split and recombined by applying a temporal sequence of Raman pulses during the expansion of a cloud of cold atoms behaving approximately as a point source. The PSI can work as a sensitive multi-axes gyroscope that can automatically filter out the signal from accelerations. The phase shift arising from rotations is proportional to the momentum transferred to each atom from the Raman pulses. Therefore, by increasing the momentum transfer, it should be possibly to enhance the sensitivity of the PSI. Here, we investigate the degree of enhancement in sensitivity that could be achieved by augmenting the PSI with large momentum transfer (LMT) employing a sequence of many Raman pulses with alternating directions. Contrary to typical approaches used for describing a PSI, we employ a model under which the motion of the center of mass of each atom is described quantum mechanically. We show how increasing Doppler shifts lead to imperfections, thereby limiting the visibility of the signal fringes, and identify ways to suppress this effect by increasing the effective, two-photon Rabi frequencies of the Raman pulses. Taking into account the effect of spontaneous emission, we show that, for a given value of the one-photon Rabi frequency, there is an optimum value for the number of pulses employed, beyond which the net enhancement in sensitivity begins to decrease. For a one-photon Rabi frequency of 200 MHz, for example, the peak value of the factor of enhancement in sensitivity is ~39, for a momentum transfer that is ~69 times as large as that for a conventional PSI. We also find that this peak value scales as the one-photon Rabi frequency to the power of 4/5.