111 research outputs found
Beam Extraction and Transport
This chapter gives an introduction to low-energy beam transport systems, and
discusses the typically used magnetostatic elements (solenoid, dipoles and
quadrupoles) and electrostatic elements (einzel lens, dipoles and quadrupoles).
The ion beam emittance, beam space-charge effects and the physics of ion source
extraction are introduced. Typical computer codes for analysing and designing
ion optical systems are mentioned, and the trajectory tracking method most
often used for extraction simulations is described in more detail.Comment: presented at the CERN Accelerator School CAS 2012: Ion Sources,
Senec, 29 May - 8 June 201
Photoelectron Emission from Metal Surfaces Induced by VUV-emission of Filament Driven Hydrogen Arc Discharge Plasma
Photoelectron emission measurements have been performed using a
filament-driven multi-cusp arc discharge volume production H^- ion source
(LIISA). It has been found that photoelectron currents obtained with Al, Cu,
Mo, Ta and stainless steel (SAE 304) are on the same order of magnitude. The
photoelectron currents depend linearly on the discharge power. It is shown
experimentally that photoelectron emission is significant only in the short
wavelength range of hydrogen spectrum due to the energy dependence of the
quantum efficiency. It is estimated from the measured data that the maximum
photoelectron flux from plasma chamber walls is on the order of 1 A per kW of
discharge power
An Experimental Study of Waveguide Coupled Microwave Heating with Conventional Multicusp Negative Ion Source
Negative ion production with conventional multicusp plasma chambers utilizing
2.45 GHz microwave heating is demonstrated. The experimental results were
obtained with the multicusp plasma chambers and extraction systems of the
RFdriven RADIS ion source and the filament driven arc discharge ion source
LIISA. A waveguide microwave coupling system, which is almost similar to the
one used with the SILHI ion source, was used. The results demonstrate that at
least one third of negative ion beam obtained with inductive RF-coupling
(RADIS) or arc discharge (LIISA) can be achieved with 1 kW of 2.45 GHz
microwave power in CW mode without any modification of the plasma chamber. The
co-extracted electron to H^- ratio and the optimum pressure range were observed
to be similar for both heating methods. The behaviour of the plasma implies
that the energy transfer from the microwaves to the plasma electrons is mainly
an off-resonance process
Experiments with planar inductive ion source meant for creation ofH+ Beams
In this article the effect of different engineering parameters of an rf-driven ion sources with external spiral antenna and quartz disk rf-window are studied. Paper consists of three main topics: The effect of source geometry on the operation gas pressure, the effect of source materials and magnetic confinement on extracted current density and ion species and the effect of different antenna geometries on the extracted current density. The operation gas pressure as a function of the plasma chamber diameter, was studied. This was done with three cylindrical plasma chambers with different inner diameters. The chamber materials were studied using two materials, aluminum and alumina (AlO{sub 2}). The removable 14 magnet multicusp confinement arrangement enabled us to compare the effects of the two wall materials with and without the magnetic confinement. Highest proton fraction of {approx} 8% at 2000 W of rf-power and at pressure of 1.3 Pa was measured using AlO{sub 2} plasma chamber and no multicusp confinement. For all the compared ion sources at 1000W of rf-power, source with multicusp confinement and AlO2 plasma chamber yields highest current density of 82.7 mA/cm{sup 2} at operation pressure of 4 Pa. From the same source highest measured current density of 143 mA/cm{sup 2} at 1.3 Pa and 2200W of rf-power was achieved. Multicusp confinement increased the maximum extracted current up to factor of two. Plasma production with different antenna geometries was also studied. Antenna tests were performed using same source geometry as in source material study with AlO{sub 2} plasma chamber and multicusp confinement. The highest current density was achieved with 4.5 loop solenoid antenna with 6 cm diameter. Slightly lower current density with lower pressure was achieved using tightly wound 3 loop spiral antenna with 3.3 cm ID and 6 cm OD
Empirical study of multidimensional Child-Langmuir law with plasma ion source extraction using round apertures
One dimensional Child-Langmuir (CL) law is commonly used in ion source physics to describe space charge limited ion extraction from the plasma. Recently 2D and 3D CL laws have been derived, but plasma ion extraction does not strictly meet the assumptions in these CL laws. Investigations on the applicability of the CL laws to ion source extraction were conducted using filament-driven ion source, measuring the beam currents as a function of extraction voltage. The experiments are complemented with simulations where IBSimu is used for studying the behaviour of plasma meniscus. Three different voltage regions were identified with low, moderate and high voltage. With moderate voltages the extracted beam current density shows signs of 3D CL law. The results indicate that for the total beam current CL laws are not valid but instead require collimation for the CL effects emerge.peerReviewe
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