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Low pumping energy mode of the 'optical bars'/'optical lever' topologies of gravitational-wave antennae

机译:重力波天线的“光杆” /“光杆”拓扑的低泵浦能量模式

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The "optical bars"/"optical lever" topologies of gravitational-wave antennae allow to obtain sensitivity better that the Standard Quantum Limit while keeping the optical pumping energy in the antenna relatively low. Element of the crucial importance in these schemes is the local meter which monitors the local test mirror position. Using cross-correlation of this meter back-action noise and its measurement noise it is possible to further decrease the optical pumping energy. In this case the pumping energy minimal value will be limited by the internal losses in the antenna only. Estimates show that for values of parameters available for contemporary and planned gravitational-wave antennae, sensitivity about one order of magnitude better than the Standard Quantum Limit can be obtained using the pumping energy about one order of magnitude smaller energy than is required in the traditional topology in order to obtain the Standard Quantum Limit level of sensitivity. (C) 2003 Elsevier B.V. All rights reserved. [References: 28]
机译:重力波天线的“光杆” /“光杆”拓扑允许获得比标准量子极限更好的灵敏度,同时保持天线中的光泵浦能量相对较低。在这些方案中至关重要的元素是监控本地测试镜位置的本地仪表。使用该仪表背作用噪声及其测量噪声的互相关,可以进一步降低光泵浦能量。在这种情况下,泵浦能量最小值将仅受天线内部损耗的限制。估计表明,对于当代和计划中的重力波天线可用的参数值,使用比传统拓扑所需的能量小约一个数量级的泵浦能量,可以获得比标准量子极限高约一个数量级的灵敏度。为了获得灵敏度的标准量子极限水平。 (C)2003 Elsevier B.V.保留所有权利。 [参考:28]

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