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A directly heated thermionic high power electron beam source was constructed.
The system consists of a Telemark 269 UHV series, 6x15cc multi pocket electron beam source package, and insitu crystal thickness monitoring.
In addition, the design of electron beam source of 364 kW beam power, beam tunnel, depressed collector and RF window are also discussed.
In the paper an analysis of a possible simplified experiment performed on liquid flowing lithium target heated by an electron beam source is discussed, mainly concerning dimensioning, scaling effects, detailed calculations of the electron heating deposition scenarios and experiment significance.
The electron beam source for this FEL is a 600 MeV superconducting energy recovery linac with peak currents of a few kA, normalised rms emittance ˜3π mm mrad and rms energy spread ˜5 × 10−4.
This effect is brought about by the use of our novel forevacuum-pressure, plasma-cathode electron beam source, which can produce energetic, focused electron beams, with associated beam-produced plasmas, in the previously inaccessible pressure range of 1 100 Pa.
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The CNT array cathodes are expected to be applied to high-power vacuum electronic devices as electron beam sources.
As an MIT graduate student, he lived at Ashdown House and worked in the Research Laboratory of Electronics (RLE) on high-energy electron beam sources and vacuum systems compatible with electron beams.
CNT arrays are excellent candidate as intense-current electron beam sources and can be applied to high-power vacuum electronic devices in the near future.
The paper is primarily concerned with the design, fabrication and experimentation of electron beam sources developed by our research group at electron beam sources development laboratory (EBSDL).
This includes directly and indirectly heated thermionic electron beam sources as well as high power line source electron guns.
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