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Comparing resolved-sideband cooling and measurement-based feedback cooling on an equal footing: Analytical results in the regime of ground-state cooling

机译:在相同的基础上比较分辨边带冷却和基于测量的反馈冷却:基态冷却状态下的分析结果

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摘要

We show that in the regime of ground-state cooling, simple expressions can be derived for the performance of resolved-sideband cooling-an example of coherent feedback control-and optimal linear measurement-based feedback cooling for a harmonic oscillator. These results are valid to leading order in the small parameters that define this regime. They provide insight into the origins of the limitations of coherent and measurement-based feedback for linear systems, and the relationship between them. These limitations are not fundamental bounds imposed by quantum mechanics, but are due to the fact that both cooling methods are restricted to use only a linear interaction with the resonator. We compare the performance of the two methods on an equal footing-that is, for the same interaction strength-and confirm that coherent feedback is able to make much better use of the linear interaction than measurement-based feedback. We find that this performance gap is caused not by the back-action noise of the measurement but by the projection noise. We also obtain simple expressions for the maximal cooling that can be obtained by both methods in this regime, optimized over the interaction strength.
机译:我们表明,在基态冷却方式下,可以为解析边带冷却的性能导出简单的表达式-相干反馈控制的示例-以及基于最优线性测量的谐波振荡器的反馈冷却。这些结果在定义此方案的小参数中对前导顺序有效。他们提供了对线性系统基于相干和基于测量的反馈的局限性的起源及其之间的关系的了解。这些限制不是量子力学施加的基本限制,而是由于以下事实:两种冷却方法都被限制为仅使用与谐振器的线性相互作用。我们在相等的基础上(即,对于相同的交互强度)比较了两种方法的性能,并确认相干反馈比基于测量的反馈能够更好地利用线性交互。我们发现,这种性能差距不是由测量的后向噪声引起的,而是由投影噪声引起的。我们还获得了在这种方式下可以通过两种方法获得的最大冷却的简单表达式,并在相互作用强度上进行了优化。

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