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Experimental investigation on sub-miliKelvin temperature control at liquid hydrogen temperatures

机译:液氢温度下亚密尔开尔文温度控制的实验研究

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摘要

Temperature control around 20 K with a tolerance of better than 1 mili-Kelvin is challenging but essential for applications like cooling deuterium/tritium target in fusion ignition experiments. To explore the practicability of cryogenic temperature control on this level with a cryocooler as the cold source instead of a cryogen bath, experimental investigations were conducted to approach the best performance by optimizing configurations of effective measures. A special heat sink was fabricated and attached to the second-stage cold head of a G-M cryocooler which could reach temperatures down to 2.5 K and provide 13 W cooling power at 18 K. A thermal reservoir and/or temperature transmission damping were incorporated, as well as a manganin resistance wire electrical heater attached to the heat sink. Experimental results show that an optimal stability of the temperature of the shielded heat sink within±0.4 mK at 20 K was achieved by choosing proper excitation for the sensors, control mode for the heater and capacity for the thermal reservoir.
机译:将温度控制在20 K左右且公差优于1 mili-Kelvin很有挑战性,但对于诸如聚变点火实验中的冷却氘/ tri靶等应用至关重要。为了探索用低温冷却器代替冷水浴作为冷源在此水平上进行低温控制的实用性,进行了实验研究,以通过优化有效措施的配置来达到最佳性能。制造了一个特殊的散热器,并将其安装到GM低温冷却器的第二级冷头上,该散热器的温度可降至2.5 K,并在18 K时提供13 W的冷却功率。以及连接到散热器的锰电阻丝电加热器。实验结果表明,通过为传感器选择合适的励磁,为加热器选择控制模式以及为储热器选择容量,可以在20 K时将屏蔽散热器的温度保持在±0.4 mK以内的最佳稳定性。

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