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楼主: Extraneous
发表于 2025-3-25 04:06:48 | 显示全部楼层
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Practical Considerations for Gyrotron Design,nd technological nature). Design specifications and goals will become more stringent if one wishes to work at elevated frequencies, higher power levels from long-pulse to CW operation, and with higher cyclotron harmonics (. > 1). The general design constraints for high power gyrotrons are shown in T
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Electron Optical and Guiding System,trons, the source of electrons is frequently a magnetron injection gun (MIG), which produces annular electron beams having the desired beam properties. After passing through the interaction region and transferring energy to the output RF beam, the spent beam is collected at the beam dump, generally
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RF Window,ut transmission line. It should withstand high power, mechanical and thermal stresses, be leak tight (≈ 10. Torr) and be lossless. The basic problems to be addressed for high power RF windows are power handling capability, selection of window material, thermal and mechanical stresses and their manag
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Applications, been used for various electron cyclotron wave applications in magnetically confined for thermonuclear fusion energy research. They are also used to generate ECR plasmas for the production of multi charged ions and soft X-rays. In high frequency, high magnetic field EPR spectroscopy, gyrotrons serve
发表于 2025-3-26 13:47:56 | 显示全部楼层
Isabel Fabregat,Patricia Sanchotheir solid state counterparts are not able to compete as far as delivering the required power at microwave to millimetric wavelengths. These applications vary from electron cyclotron resonance heating of plasmas in fusion reactors to the sintering of industrial ceramics. This unique ability to prod
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