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Polarization method of the inert gas atomic nucleus which uses the container and the particular container for inert gas enclosure

机译:惰性气体原子核的极化方法,使用该容器和用于惰性气体封闭的特定容器

摘要

Polarization method of the inert gas atomic nucleus which it is possible, uses the container and the particular container for inert gas enclosure almost to actualize complete circularly polarized light state inside the container by using the thickness of the material which is used for the window for optical incidence and the monocrystal material which assures the rationalization of crystal orientation, is offered. And, alkaliproof is high, also pressure tightness is high, there is no permeability of 3 He, in addition, can ignore the neutron absorption which corresponds to application to fundamental science and for example such as neutron dispersion, the particular container and particular polarential telegraph system are offered.The container for inert gas enclosure of this invention, the container itself is connected by 3 and the said container itself 3, has with the inert gas content gas and the pipe 4 which, introduces the alkaline metal into container itself 3 in the aforementioned container itself 3, thickness and crystal orientation are times when the window 2 for optical incidence which consists of the respective specified thickness and the monocrystal material which was adjusted specified direction is provided, produces the container for inert gas enclosure, ideally with the sapphire and the like.
机译:可能的惰性气体原子核的偏振方法,使用容器和用于惰性气体封闭的特定容器,通过利用用于光学窗口的材料的厚度,几乎可以实现容器内部的完整圆偏振光状态。提供了入射角和确保晶体取向合理化的单晶材料。并且,耐碱性高,压力密封性也高, 3 He的磁导率不高,此外,可以忽略与基础科学应用相对应的中子吸收,例如中子弥散,本发明的用于惰性气体封闭的容器,该容器本身由3连接,并且所述容器本身3具有惰性气体含量的气体和引入该气体的管道4。在上述容器本身3中,将碱金属注入到容器本身3中,厚度和晶体取向是当设置由各自的特定厚度和调整了特定方向的单晶材料构成的光入射窗2而制成惰性容器时的时间。气体外壳,最好是蓝宝石等。

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