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Low vibration cooling using a pulse tube cooler and cryostat for the GRAVITY beam combiner instrument at the VLTI

机译:VLTI的GRAVITY光束组合仪使用脉冲管冷却器和低温恒温器进行低振动冷却

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GRAVITY is a second generation VLTI instrument for high-precision narrow-angle astrometry and phase-referenced interferometric imaging in the astronomical K-band. The cryostat of the beam combiner instrument provides the required temperatures for the various subunits ranging from 40K to 290K with a milli-Kelvin temperature stability for some selected units. The bath cryostat is cooled with liquid nitrogen and makes use of the exhaust gas to cool the main optical bench to an intermediate temperature of 240K. The fringe tracking detector will be cooled separately by a single-stage pulse tube cooler to a temperature of 40K. The pulse tube cooler is optimized for minimum vibrations. In particular its warm side is connected to the 80K reservoir of the LN2 cryostat to minimize the required input power. All temperature levels are actively stabilized by electric heaters. The cold bench is supported separately from the vacuum vessel and the liquid nitrogen reservoir to minimize the transfer of acoustic noise onto the instrument.
机译:重力是用于高精度窄角度的第二代VLTI仪器,在天文k波段中的相位参考干涉测量成像。光束组合器仪器的低温仪为各种亚基提供所需的温度,为40k至290k,对于一些选定的单元,毫克温度稳定性。用液氮冷却浴槽式冷冻罩,并利用废气将主光学台上冷却至240k的中间温度。边缘跟踪检测器将通过单级脉冲管冷却器单独冷却至40k的温度。脉冲管冷却器优化以用于最小振动。特别地,其暖侧连接到LN2低温恒温器的80K储存器,以最小化所需的输入功率。所有温度水平通过电加热器主动稳定。冷板与真空容器和液氮储存器分开支撑,以最大限度地减少声噪声在仪器上的转移。

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