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Development of a new UHV/XHV pressure standard (cold atom vacuum standard)

机译:开发新的UHV / XHV压力标准(冷原子真空标准)

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摘要

The National Institute of Standards and Technology has recently begun a program to develop a primary pressure standard that is based on ultra-cold atoms, covering a pressure range of 1 x 10(-6) Pa-1 x 10(-10) Pa and possibly lower. These pressures correspond to the entire ultra-high vacuum range and extend into the extreme-high vacuum. This cold-atom vacuum standard (CAVS) is both a primary standard and absolute sensor of vacuum. The CAVS is based on the loss of cold, sensor atoms (such as the alkali-metal lithium) from a magnetic trap due to collisions with the background gas (primarily H-2) in the vacuum. The pressure is determined from a thermally-averaged collision cross section, which is a fundamental atomic property, and the measured loss rate. The CAVS is primary because it will use collision cross sections determined from ab initio calculations for the Li + H-2 system. Primary traceability is transferred to other systems of interest using sensitivity coefficients.
机译:国家标准和技术研究所最近开始开发基于超冷原子的初级压力标准,覆盖1×10(6)PA-1 x 10(-10)Pa和的压力范围 可能降低。 这些压力对应于整个超高真空范围,并延伸到极限真空中。 这种冷原子真空标准(CAVS)是一种原始标准和绝对的真空传感器。 由于与真空中的背景气体(主要H-2)碰撞,脉冲脉,来自磁阱的冷,传感器原子(例如碱金属锂)的损失。 压力由热平均碰撞横截面确定,其是基本原子特性,以及测量的损失率。 骑士船只是主要的,因为它将使用从AB Initio计算的碰撞横截面进行Li + H-2系统。 使用敏感系数将主要可追溯性转移到其他目的系统。

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