The 255 keV and 150 keV proton beams transmission through tapered glass capillaries with 10 μm and 5 μm outlet diameters, respectively, were studied. The dependence of the output current on input current and the dependence of coefficient of proton beam transmission through capillary on the tilt angle of the capillary with respect to the beam axis were investigated. The focusing and guiding effects for transmitted proton beams were observed. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/3521
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In this study, experiments are performed to study the transmission of 15 keV C− ions through straigh...
In this review work, the passage of charged and neutral beams through dielectric capillary guides is...
We study in a preliminary and simplified manner the possibility of bending submicron beams by means ...
A study of the 150–320 keV proton beam transmission through tapered glass (borosilicate) capillaries...
The 150 keV proton beams transmission through nanocapillary structures of Al2O3 was studied. The de...
International audienceIn a combined theoretical and experimental study, we give evidence that the se...
In recent years, tapered glass capillary ion beam focusing is developing rapidly. It is attractive f...
International audienceThe transmission as a function of the tilt angle of a 3 keV Ar⁺ ion beam throu...
International audienceWhen an ion beam is injected into a tapered insulating capillary, the induced ...
International audienceExperimental observation of the dynamics of a micro-focused, 1 MeV proton beam...
International audienceTransmission of 1 keV single charged nitrogen ions through a macroscopic taper...
An insulator charges up when exposed to charged particles. It has been shown that this can be used t...
In this study, experiments are performed to study the transmission of 15 keV C− ions through straigh...
In this review work, the passage of charged and neutral beams through dielectric capillary guides is...
We study in a preliminary and simplified manner the possibility of bending submicron beams by means ...