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Dry demagnetization cryostat for sub-millikelvin helium experiments: Refrigeration and thermometry

机译:亚millikelvin氦气实验用干式去磁低温恒温器:制冷和测温

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摘要

We demonstrate successful “dry” refrigeration of quantum fluids down to T = 0.16 mK by using copper nuclear demagnetization stage that is pre-cooled by a pulse-tube-based dilution refrigerator. This type of refrigeration delivers a flexible and simple sub-mK solution to a variety of needs including experiments with superfluid 3He. Our central design principle was to eliminate relative vibrations between the high-field magnet and the nuclear refrigeration stage, which resulted in the minimum heat leak of Q = 4.4 nW obtained in field of 35 mT. For thermometry, we employed a quartz tuning fork immersed into liquid 3He. We show that the fork oscillator can be considered as self-calibrating in superfluid 3He at the crossover point from hydrodynamic into ballistic quasiparticle regime.
机译:我们演示了通过使用铜核退磁级(通过基于脉冲管的稀释制冷机进行预冷却)成功地实现了低至T = 0.16 mK的量子流体的“干式”制冷。这种制冷方式可为各种需求提供灵活而简单的sub-mK解决方案,包括使用超流体3He进行的实验。我们的主要设计原理是消除高磁场磁体与核制冷级之间的相对振动,从而在35 mT的磁场中获得的最小热泄漏Q = 4.4 nW。对于测温,我们使用了浸入液体3He中的石英音叉。我们表明叉形振荡器可以认为是在超流体3He中从流体动力学到弹道准粒子状态的交叉点的自校准。

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