JILA, Boulder, Colorado 80309, USA.
Department of Physics, University of Colorado, Boulder, Colorado 80309, USA.
Phys Rev Lett. 2019 Nov 1;123(18):183603. doi: 10.1103/PhysRevLett.123.183603.
Through simultaneous but unequal electromechanical amplification and cooling processes, we create a method for a nearly noiseless pulsed measurement of mechanical motion. We use transient electromechanical amplification (TEA) to monitor a single motional quadrature with a total added noise -8.5±2.0 dB relative to the zero-point motion of the oscillator, or equivalently the quantum limit for simultaneous measurement of both mechanical quadratures. We demonstrate that TEA can be used to resolve fine structure in the phase space of a mechanical oscillator by tomographically reconstructing the density matrix of a squeezed state of motion. Without any inference or subtraction of noise, we directly observe a squeezed variance 2.8±0.3 dB below the oscillator's zero-point motion.
通过同时但不等效的机电放大和冷却过程,我们创建了一种几乎无噪声的机械运动脉冲测量方法。我们使用瞬态机电放大(TEA)来监测单个运动正交,总添加噪声为-8.5±2.0dB,相对于振荡器的零点运动,或者等效于同时测量机械正交的量子极限。我们证明 TEA 可以通过对运动压缩态的密度矩阵进行层析重建来解析机械振荡器相空间中的精细结构。我们直接观察到压缩方差比振荡器的零点运动低 2.8±0.3dB,无需任何推断或噪声减法。