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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Simultaneous unbalanced shared local oscillator heterodyne interferometry for high signal-to-noise-ratio, minimally destructive dispersive detection of time-dependent atomic spins
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Simultaneous unbalanced shared local oscillator heterodyne interferometry for high signal-to-noise-ratio, minimally destructive dispersive detection of time-dependent atomic spins

机译:同时不平衡共享本地振荡器外差干涉测量法,可实现高信噪比,最小破坏性色散检测随时间变化的原子自旋

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摘要

We demonstrate "simultaneous unbalanced shared local oscillator heterodyne interferometry" (SUSHI) a new method for minimally destructive, high signal-to-noise-ratio (SNR) dispersive detection of atomic spins. In SUSHI a dual-frequency probe laser interacts with atoms in one arm of a Mach-Zehnder interferometer, and then beats against a bright local oscillator (LO) beam traversing the other arm, resulting in two simultaneous, independent heterodyne measurements of the atom-induced phase shift. Measurement noise due to mechanical disturbances of beam paths is strongly rejected by the technique of active subtraction, in which antinoise is actively written onto the LO beam via an optical phase-locked loop. In SUSHI, technical noise due to phase, amplitude, and frequency fluctuations of the various laser fields is strongly rejected (i) for any mean phase bias between the interferometer arms, (ii) without the use of piezo actuated mirrors, and (iii) without signal balancing. We experimentally demonstrate an ultralow technical-noise-limited sensitivity of 51 nrad/√Hz over a measurement bandwidth of 60 Hz to 8 kHz using a 230 μW probe, and stay within ~3 dB of the standard quantum limit as probe power is reduced by more than 5 orders of magnitude to as low as 650 pW. SUSHI is therefore well suited to performing quantum nondemolition measurements for preparing spin-squeezed states and for high-SNR, truly continuous observations of ground-state Rabi flopping in cold atom ensembles.
机译:我们演示了“同时不平衡共享本地振荡器外差干涉法”(SUSHI)一种用于自旋的最小破坏性,高信噪比(SNR)色散检测的新方法。在SUSHI中,双频探测激光与Mach-Zehnder干涉仪的一个臂中的原子相互作用,然后撞击穿过另一臂的明亮本振(LO)光束,从而同时对原子进行了两次独立的外差测量诱导相移。由于光路的机械干扰而导致的测量噪声被主动减法技术所强烈拒绝,在主动减法技术中,抗噪声通过光学锁相环主动写入LO光束。在SUSHI中,由于各种激光场的相位,幅度和频率波动而引起的技术噪声被强烈拒绝(i)干涉仪臂之间的任何平均相位偏置;(ii)不使用压电致动镜;以及(iii)没有信号平衡。我们通过实验证明了使用230μW探头在60 Hz至8 kHz的测量带宽内具有51 nrad /√Hz的超低技术噪声极限灵敏度,随着探头功率的降低,该灵敏度保持在标准量子极限的约3 dB之内。超过5个数量级,低至650 pW。因此,SUSHI非常适合执行量子非爆破测量,以准备自旋压缩状态和高SNR,真正连续观察冷原子体中基态Rabi跳变。

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