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Critical photoelectric potential of clean mercury and the influence of gases and of the circulation of the mercury upon it

机译:清洁汞的临界光电势及其对气体和汞循环的影响

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摘要

The apparatus used by Kazda and Dunn for the determination of the critical photoelectric potential of mercury has been completely reconstructed. The stopcocks, the grease of which was the source of contaminating vapors, have been replaced by mercury cut-offs and the high temperature cement used in the construction of the photo-electric cell has been replaced by a graduated quartz-Pyrex seal. Fresh clean mercury was returned to the still. With this new apparatus and under these new working conditions the long wave-length limit for running mercury has been found to be 2735A. The conditions within the apparatus have been found to be practically free from contaminating vapors so that the critical frequency has been found for stationary mercury, namely 2735±10A, which is in entire agreement with Kazda for flowing mercury. This impurity in the old apparatus caused the photo-current to increase four-fold its original value in thirteen to twenty minutes after the still was turned off. It then slowly receded, falling below its initial value in three or four days. This increase in the photo-current was accompanied by a rise in the threshold to 2850A, thence falling in time to a constant value 2680A. In the apparatus as it now stands this same four-fold increase is not reached until some eighty hours after the still is turned off and remains perfectly constant indefinitely thereafter. The long wave-length limit for this maximum sensitivity was found to be 2910A.ududHydrogen, helium, argon, nitrogen, and water vapor in extremely small quantities in contact with the surface and also, except in the case of water vapor, dissolved in the body of the mercury, had no influence whatever upon the photoelectric behavior of the mercury or upon the rate of rise of sensitivity upon turning off the still except that each had a marked cleansing effect in reducing the concentration of the impurity which slowly contaminates the surface. Oxygen had a decided reducing effect upon the threshold value, bringing it down to 2555A in eighteen hours.
机译:卡兹达(Kazda)和邓恩(Dunn)用于测定汞的临界光电势的装置已经完全重建。旋塞阀,其油脂是污染蒸气的来源,已被汞截留物所替代,而用于光电管构造的高温水泥已被带刻度的石英-耐热玻璃密封所替代。新鲜干净的汞返回到蒸馏瓶。使用这种新设备并在这些新的工作条件下,已发现运行汞的长波长极限为2735A。已经发现该装置内的条件实际上没有污染蒸气,因此对于固定汞已经发现了临界频率,即2735±10A,这与卡兹达对于流动的汞完全一致。在关闭蒸馏器后的十三到二十分钟内,旧设备中的这种杂质使光电流增加了其原始值的四倍。然后,它缓慢地后退,在三到四天内跌破其初始值。光电流的这种增加伴随着阈值升高到2850A,因此随时间下降到恒定值2680A。在目前的装置中,直到蒸馏器关闭后约八十小时才达到相同的四倍增加,此后无限期地保持完全恒定。发现该最大灵敏度的长波长限制为2910A。氢气,氦气,氩气,氮气和水蒸气与表面的接触极少,此外,除了水蒸气,溶解在汞体内的溶液,对汞的光电性能或关闭蒸馏器时灵敏度的提高速率均无影响,只是每种溶液均具有明显的清洁作用,可降低缓慢污染的杂质浓度表面。氧气对阈值有明显的降低作用,可在18小时内将其降至2555A。

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    Hales Wayne B.;

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  • 年度 1928
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