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Liquid helium-free cryostat and hermetically sealed cryogenic microwave cavity for hyperfine spectroscopy of antiprotonic helium

机译:无液氦低温恒温器和气密密封的低温微波腔,用于反质子氦的超精细光谱

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摘要

The design and properties of a new cryogenic set-up for laser–microwave–laser hyperfine structure spectroscopy of antiprotonic helium – an experiment performed at the CERN-Antiproton Decelerator (AD), Geneva, Switzerland – are described. Similar experiments for 4He have been performed at the AD for several years. Due to the usage of a liquid helium operated cryostat and therefore necessary refilling of coolants, a loss of up to 10% beamtime occurred. The decision was made to change the cooling system to a closed-circuit cryocooler. New hermetically sealed target cells with minimised 3He gas volume and different dimensions of the microwave resonator for measuring the 3He transitions were needed. A new set-up has been designed and tested at Stefan Meyer Institute in Vienna before being used for the 2009 and 2010 beamtimes at the AD.
机译:描述了一种用于反质子氦的激光-微波-激光超细结构光谱学的新型低温装置的设计和性能,该装置是在瑞士日内瓦的CERN-反质子减速器(AD)上进行的。在AD上已经对4He进行了类似的实验数年。由于使用液氦操作的低温恒温器,因此需要对冷却液进行补充,因此损失了多达10%的光束时间。决定将冷却系统改为闭路低温冷却器。需要具有最小化3He气体体积和用于测量3He跃迁的微波谐振器尺寸不同的新型气密目标细胞。在维也纳的Stefan Meyer研究所设计并测试了一种新装置,然后将其用于AD的2009年和2010年的发射时间。

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