论文标题
纤维陀螺仪的物质波类似物
Matter Wave Analog of a Fiber-Optic Gyroscope
论文作者
论文摘要
限制在波导内部原子干涉仪的传播波袋可以大大降低设备的大小,同时保持高灵敏度。我们已经意识到了二维SAGNAC原子干涉仪,其中Bose符合的$^{87} $ rb原子在由准激光束形成的紧密波导中传播,这是光纤陀螺仪(Fog)的物质波类似物。将冷凝物分裂,反射和与一系列bragg脉冲重新组合,而波导则横向移动,以使波袋轨迹封闭了一个区域。 Delta-kick冷却用于制备\ si {3} {\ nano \ kelvin}温度的低密度原子波袋。低密度减少了原子间相互作用的影响,而低温限制了干涉仪循环中波袋的扩展。有效的封闭面积为$ 0.8 \ text {mm}^2 $,平均附带对比度为20 \%,而基础对比度最高为60 \%。降低的平均对比度的主要来源是由光学成分的机械振动引起的相位噪声。我们提出了这种原子旋转传感器的Allan偏差的第一个测量,这表明干涉仪相位噪声下降,平均时间$τ$为$τ^{ - 1/2} $,对于$τ$,最多10,000秒。平均30分钟后,统计噪声低于地球旋转速率。
Confining the propagating wavepackets of an atom interferometer inside a waveguide can substantially reduce the size of the device while preserving high sensitivity. We have realized a two-dimensional Sagnac atom interferometer in which Bose-condensed $^{87}$Rb atoms propagate within a tight waveguide formed by a collimated laser beam, a matter wave analog of the fiber optic gyro (FOG). The condensate is split, reflected, and recombined with a series of Bragg pulses while the waveguide moves transversely so that the wavepacket trajectories enclose an area. Delta-kick cooling is used to prepare low-density atomic wavepackets with a temperature of \SI{3}{\nano \kelvin}. The low density reduces the impact of interatomic interactions, while the low temperature limits the expansion of the wavepacket during the interferometer cycle. The effective enclosed area is $0.8 \text{mm}^2$ with an average fringe contrast of 20\% and underlying contrast up to 60\%. The main source of the reduced average contrast is phase noise caused by mechanical vibrations of the optical components. We present the first measurement of Allan deviation for such an atom rotation sensor, showing that the interferometer phase noise falls with averaging time $τ$ as $τ^{-1/2}$ for $τ$ up to 10,000 seconds. The statistical noise falls below the Earth rotation rate after 30 minutes of averaging.