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Bimodal velocity and size distributions of pulsed superfluid helium droplet beams

机译:脉冲超流氦液滴梁的双峰速度和尺寸分布

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摘要

We report detailed measurements of velocities and sizes of superfluid helium droplets produced from an Even-Lavie pulse valve at stagnation pressures of 20-60 atm and temperatures between 5.7 and 18.0 K. By doping neutral droplets with Rhodamine 6G cations produced from an electrospray ionization source and detecting the positively charged droplets at two different locations along the beam path, we determine the velocities of the different groups of droplets. By subjecting the doped droplet beam to a retardation field, size distributions can then be analyzed. We discover that at stagnation temperatures above 8.0 K, a single group of droplets is observed at both locations, but at 8.0 K and below, two different groups of droplets with different velocities are detectable. The slower group, considered from fragmentation of liquid helium, cannot be deterred by the retardation voltage at 9 kV, implying an exceedingly large size. The faster group, considered from condensation of gaseous helium, has a bimodal distribution when the stagnation temperatures are below 12.3 K at 20 and 40 atm, or 16.1 K at 60 atm. We also report similar size measurements using low energy electrons for impact ionization, and this latter method can be used for facile in situ characterization of pulsed droplet beams. The mechanism of the bimodal size distribution of the condensation group and the reason for the coexistence of both the condensation and fragmentation groups remain elusive.
机译:我们报告了在20-60 atm的停滞压力和5.7-18.0 K的温度下,通过使用电喷雾电离源产生的罗丹明6G阳离子掺杂中性液滴,并在束流路径的两个不同位置检测带正电的液滴,对偶数Lavie脉冲阀产生的超流氦液滴的速度和大小进行了详细测量,我们测定了不同液滴群的速度。通过将掺杂液滴束置于延迟场中,可以分析尺寸分布。我们发现,在高于8.0 K的停滞温度下,在两个位置都观察到一组液滴,但在8.0 K及以下,可以检测到两组不同速度的液滴。从液氦碎裂的角度考虑,较慢的组不能被9kV的延迟电压阻止,这意味着其尺寸非常大。当停滞温度在20和40大气压下低于12.3 K,或在60大气压下低于16.1 K时,由气态氦冷凝而来的更快基团具有双峰分布。我们还报告了使用低能电子进行碰撞电离的类似尺寸测量,后一种方法可用于脉冲液滴束的简易原位表征。缩合基团的双峰尺寸分布的机制以及缩合基团和碎裂基团共存的原因仍然不清楚。

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