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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Experimental investigation of a control scheme for a zero-detuning resonant sideband extraction interferometer for next-generation gravitational-wave detectors
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Experimental investigation of a control scheme for a zero-detuning resonant sideband extraction interferometer for next-generation gravitational-wave detectors

机译:下一代重力波探测器零失谐共振边带提取干涉仪控制方案的实验研究

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Some next-generation gravitational-wave detectors, such as the American Advanced LIGO project and the Japanese LCGT project, plan to use power recycled resonant sideband extraction (RSE) interferometers for their interferometer's optical configuration. A power recycled zero-detuning (PRZD) RSE interferometer, which is the default design for LCGT, has five main length degrees of freedom that need to be controlled in order to operate a gravitational-wave detector. This task is expected to be very challenging because of the complexity of optical configuration. A new control scheme for a PRZD RSE interferometer has been developed and tested with a prototype interferometer. The PRZD RSE interferometer was successfully locked with the control scheme. It is the first experimental demonstration of a PRZD RSE interferometer with suspended test masses. The result serves as an important stEP 1for the operation of LCGT.
机译:一些下一代重力波探测器,例如美国Advanced LIGO项目和日本LCGT项目,计划将功率回收谐振边带提取(RSE)干涉仪用于其干涉仪的光学配置。 LCGT的默认设计是功率循环零失谐(PRZD)RSE干涉仪,它具有五个主要长度自由度,需要对其进行控制才能操作重力波检测器。由于光学配置的复杂性,预计该任务将非常具有挑战性。已开发出PRZD RSE干涉仪的新控制方案,并已通过原型干涉仪进行了测试。 PRZD RSE干涉仪已成功通过控制方案锁定。这是PRZD RSE干涉仪悬挂质量的首次实验演示。该结果对于LCGT的操作是重要的stEP 1。

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