The transmission of low-energy electrons through a macroscopic steel capillary has been investigated both experimentally and theoretically. The length of the steel capillary was L = 19.5 mm and the inner diameter was d = 0.9 mm. The kinetic energy distribution of electrons transmitted through the steel capillary was recorded for a tilt angle of psi = 2.6 degrees of the incident electron beam with respect to the capillary axis. Accompanying simulations based on classical transport theory reproduce the experimental data to a high degree of agreement. Transmission for other tilt angles has also been simulated to investigate the influence of the tilt angle on the guiding efficiency
In this study, experiments are performed to study the transmission of 15 keV C− ions through straigh...
We have measured 200 eV electron transmission through a single platinum tube of a diameter of 3.3 mm...
International audienceWe present a combined experimental and theoretical study of the transmission o...
The transmission of low-energy electrons through a macroscopic steel capillary has been investigated...
In this work we study the transmission of charged particles through a single cylindrically shaped me...
Electron transmission through insulating Al2O3 nanocapillaries of different diameters (40 and 270 nm...
Electron transmission through insulating Al2O3 nanocapillaries of different diameters (40 and 270 nm...
We present simulations for electron transmission through a platinum macrocapillary (diameter d = 3.3...
International audienceSynopsis The transmission of 1 keV Ar + ions through a macroscopic glass capil...
International audienceTransmission of 1 keV single charged nitrogen ions through a macroscopic taper...
International audienceThe transmission rate of a low-energy Ar^q+ ion beam through a macroscopic gla...
International audienceThe transmission as a function of the tilt angle of a 3 keV Ar⁺ ion beam throu...
In this study, experiments are performed to study the transmission of 15 keV C− ions through straigh...
We have measured 200 eV electron transmission through a single platinum tube of a diameter of 3.3 mm...
International audienceWe present a combined experimental and theoretical study of the transmission o...
The transmission of low-energy electrons through a macroscopic steel capillary has been investigated...
In this work we study the transmission of charged particles through a single cylindrically shaped me...
Electron transmission through insulating Al2O3 nanocapillaries of different diameters (40 and 270 nm...
Electron transmission through insulating Al2O3 nanocapillaries of different diameters (40 and 270 nm...
We present simulations for electron transmission through a platinum macrocapillary (diameter d = 3.3...
International audienceSynopsis The transmission of 1 keV Ar + ions through a macroscopic glass capil...
International audienceTransmission of 1 keV single charged nitrogen ions through a macroscopic taper...
International audienceThe transmission rate of a low-energy Ar^q+ ion beam through a macroscopic gla...
International audienceThe transmission as a function of the tilt angle of a 3 keV Ar⁺ ion beam throu...
In this study, experiments are performed to study the transmission of 15 keV C− ions through straigh...
We have measured 200 eV electron transmission through a single platinum tube of a diameter of 3.3 mm...
International audienceWe present a combined experimental and theoretical study of the transmission o...