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IEEE Transactions on Electron Devices, ISSN 0018-9383, 10/2018, Volume 65, Issue 10, pp. 4585 - 4591
Journal Article
Journal of Electromagnetic Waves and Applications, ISSN 0920-5071, 04/2017, Volume 31, Issue 6, pp. 650 - 662
The high frequency characteristics of confocal waveguide interaction structure are studied, by which the confocal radius and mirror width of the confocal... 
velocity spread | particle-in-cell | Confocal waveguide | gyro-TWT
Journal Article
by Liu, DG and Tang, XB and Yan, Y and Wang, HH and Meng, L
JOURNAL OF ELECTROMAGNETIC WAVES AND APPLICATIONS, ISSN 0920-5071, 2017, Volume 31, Issue 6, pp. 650 - 662
The high frequency characteristics of confocal waveguide interaction structure are studied, by which the confocal radius and mirror width of the confocal... 
velocity spread | particle-in-cell | PHYSICS, APPLIED | gyro-TWT | Confocal waveguide | SIMULATION | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 08/2013, Volume 41, Issue 8, pp. 2264 - 2268
In this paper, beam-wave interaction analysis in a Ka-band periodically ceramic loaded gyrotron traveling-wave tube (gyro-TWT) amplifier is investigated using... 
Beam wave interaction | Gyrotrons | Dielectric losses | gyroton traveling wave tube (gyro-TWT) | interaction impedance | Loaded waveguides | Dispersion | Gain | Load modeling | dispersion | PHYSICS, FLUIDS & PLASMAS | TRAVELING-WAVE AMPLIFIER | Measurement | Usage | Stability | Electron beams | Analysis | Bandwidth | Design and construction | Traveling-wave tubes | Impedance (Electricity)
Journal Article
Journal of Infrared, Millimeter, and Terahertz Waves, ISSN 1866-6892, 2/2011, Volume 32, Issue 2, pp. 172 - 185
Journal Article
International Journal of Electronics, ISSN 0020-7217, 02/2012, Volume 99, Issue 2, pp. 225 - 238
The distributed-loss technology has been successively applied in many gyro-TWT experiments to suppress absolute instabilities. Based on the stability analysis... 
oscillation | gyro-TWT | distributed loss | the small signal linear theory | TRAVELING-WAVE AMPLIFIER | ENGINEERING, ELECTRICAL & ELECTRONIC | Dielectric constant | Noise levels | Circuits | Mathematical analysis | Electronics | Instability | Dielectrics | Gain
Journal Article
Journal of Electromagnetic Waves and Applications, ISSN 0920-5071, 01/2019, Volume 33, Issue 2, pp. 204 - 214
A circular waveguide with chiral dielectric lining was analyzed for hybrid mode dispersion relation. In chiral dielectric lining region, the different radial... 
Broadbanding technique | gyro-TWT interaction structure | dispersion shaping | dielectric loaded circular waveguide | wideband fast-wave structure | ENERGY | PHYSICS, APPLIED | DISK | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 03/2013, Volume 41, Issue 3, pp. 456 - 460
Journal Article
IEEE Transactions on Plasma Science, ISSN 0093-3813, 05/2013, Volume 41, Issue 5, pp. 1557 - 1561
Journal Article
International Journal of Infrared and Millimeter Waves, ISSN 0195-9271, 07/2008, Volume 29, Issue 7, pp. 627 - 633
In this paper, the design of an ultra-broadband Ku-band gyro-TWT amplifier is presented in detail. The preliminary parameters of the interaction structure... 
Ku-band | Gyro-TWT | Self-consistent | Interaction structure | PHYSICS, APPLIED | interaction structure | gyro-TWT | TRAVELING-WAVE AMPLIFIER | STABILITY | self-consistent | OPTICS | GAIN | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
Journal of Electromagnetic Waves and Applications, ISSN 0920-5071, 01/2017, Volume 31, Issue 1, pp. 1 - 37
The interaction structures used in microwave tubes that continue to be important despite competitive incursion from solid-state devices can have the... 
slow-wave structure | periodic structure | Microwave tube | helix traveling-wave tube | GYRO-TWTS | PHYSICS, APPLIED | DIELECTRIC SUPPORTS | INTERACTION IMPEDANCE | TAPE ANALYSIS | FIELD ANALYSIS | PROPAGATION | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
International Journal of Infrared and Millimeter Waves, ISSN 0195-9271, 7/2008, Volume 29, Issue 7, pp. 627 - 633
In this paper, the design of an ultra-broadband Ku-band gyro-TWT amplifier is presented in detail. The preliminary parameters of the interaction structure... 
Meteorology/Climatology | Interaction structure | Ku-band | Gyro-TWT | Self-consistent | Physics | Astronomy | Electronic and Computer Engineering | Radar systems | Plasma physics | Noise levels | Infrared | Simulation | Bandwidth | Nonlinearity | Dispersions | Gain | Walls
Journal Article
Journal of Computational Electronics, ISSN 1569-8025, 3/2018, Volume 17, Issue 1, pp. 392 - 398
Journal Article
International Journal of Applied Electromagnetics and Mechanics, ISSN 1383-5416, 2013, Volume 42, Issue 2, pp. 201 - 214
A circular waveguide with axially periodic thin metal disc inserts for its potential application in a gyro-TWT has been investigated for dispersion, form... 
periodic structures | interaction impedance | gyro-TWT | Dispersion | form factor | gain | AMPLIFIER | MECHANICS | PHYSICS, APPLIED | BANDWIDTH | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
2010 IEEE International Vacuum Electronics Conference (IVEC), 05/2010, pp. 369 - 370
Vane loaded coaxial structures have been found useful for mode rarefaction, when used in oversized, over-moded gyrotron amplifiers. Also such circuits can... 
Blades | Circuits | Electromagnetic waveguides | Conductors | Coaxial components | Electron tubes | Gyro-TWT | CST microwave Studio | Dispersion and interaction impedance | Research and development | Analytical models | Vane-loaded coaxial waveguide | Gyrotrons | Impedance | CST microwave studio
Conference Proceeding
2011 IEEE International Vacuum Electronics Conference (IVEC), 02/2011, pp. 341 - 342
Vane-loaded coaxial structures have been analyzed for dispersion and interaction impedance [1-2]. However the measurement of these parameters has not been... 
Impedance measurement | Blades | Vane-loaded coaxial waveguide | Software | Impedance | Software measurement | Gyro-TWT | CST microwave Studio | Dispersion and interaction impedance | Dispersion | Optical waveguides
Conference Proceeding
Journal of Fusion Energy, ISSN 0164-0313, 10/2013, Volume 32, Issue 5, pp. 570 - 574
Journal Article
Physics of Plasmas, ISSN 1070-664X, 04/2015, Volume 22, Issue 4, p. 43109
Journal Article
Nuclear Inst. and Methods in Physics Research, A, ISSN 0168-9002, 01/2015, Volume 771, pp. 98 - 103
To enlarge the interaction structure to a feasible dimension and to decrease the required magnetic field to an available strength, the gyrotron devices at THz... 
Wiggler | Free electron laser | Gyrotron | Terahertz amplifier | INSTRUMENTS & INSTRUMENTATION | SPECTROSCOPY | NUCLEAR SCIENCE & TECHNOLOGY | GYRO-TWT | TWT AMPLIFIER | GAIN | PHYSICS, PARTICLES & FIELDS | Waveguides | Magnetic fields | Plasma physics | Numerical analysis | Free electron lasers | Circular waveguides | Computer simulation | Mathematical analysis | Gyrotrons | Detectors | Amplifiers | Devices
Journal Article
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