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A source of negative ion by cesium sputtering (SNICS) can produce various negative ions from solid targets, such as B−, C−, Si−, P−, Fe−, Cu−, and Au−[16, 17], which can be implanted into the substrates after being accelerated up to the maximum 30 keV depending on the accelerator field.
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To combine high brightness electron bunches from conventional accelerators and high accelerating fields reachable with plasmas could be a good compromise allowing to further accelerate high brightness electron bunches coming from LINAC while preserving electron beam quality.
Combining high brightness electron bunches from conventional accelerators and high accelerating fields reachable with plasmas could be a good compromise allowing to further accelerate high brightness electron bunches coming from LINAC while preserving electron beam quality.
In the four-vane RFQ accelerator, the field distribution is formed mainly by the field of quadrupole modes and dipole modes.
In this accelerator, electric fields are set up as standing waves within a cylindrical metal "resonant cavity," with drift tubes suspended along the central axis.
We present theoretical and numerical studies of longitudinal compression and transverse matching of electron bunch before injecting into the Laser plasma Wake Field Accelerator (LWFA) foreseen at the ESCULAP project in ORSAY.
Since 1967 he has built numerous airplanes (including a human-powered one), rockets, gliders and a flying carpet, as well as prototypes for accelerator motors, magnetic fields and winged sculptures based on both bird and insect anatomies.
This requirement is true for both: external injection into "laser wake field accelerators", where injected beams need lengths around or shorter than 10 fs; and the "plasma wake field accelerators", where the wake field intensity scales like the driver bunch charge over the square of the rms bunch length (Qb/σ2z).
A common approach to maintain real-time capabilities is to offload computations to dedicated hardware accelerators, such as Field Programmable Gate Arrays (FPGAs).
The detector is intended as a high-speed beam monitor and diagnostics system for proton accelerators in the field of medical ion therapy and high-energy physics experiments.
This demonstrator makes use of a digital signal processor (DSP) which forms the core of the design and flexibly programmable hardware accelerators based on field programmable gate arrays (FPGAs).
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