819 results on '"Levush, B."'
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552. Calibration of a gigahertz-bandwidth vector signal generation and analysis system.
553. TESLA: effective simulation code for vacuum electronic devices with external cavities.
554. New coupled-domain technique for fast 3-D simulation of long slow-wave structures.
555. Demonstration of a wide-band 94 GHz gyrotwystron amplifier.
556. Microfabrication of Next-Generation Millimeter-Wave Vacuum Electronic Amplifiers.
557. CTLSS features supporting vacuum electron device design.
558. Experimental studies of a gyro-TWT amplifier with a lossy ceramic interaction region.
559. The MICHELLE electron gun and collector modeling tool.
560. Particle tracking on unstructured grids.
561. Design of a W-band gyrotwystron amplifier.
562. An analytic theory of spatial power deposition profiles in gyro-device collectors.
563. Simulations of multifrequency processes in fast wave devices by MAGY.
564. Higher order mode excitations in gyro-amplifiers.
565. 3D TWT modeling and experimental validation.
566. Cold-test, large signal simulator: a conformal-mesh electromagnetic field solver.
567. Three-dimensional, time-dependent simulation of coupled-cavity TWTs.
568. Modeling of electron beam interactions in structures with re-entrant cavities.
569. Modeling single- and multi-carrier performance of a helix TWTA with the 1-D parametric code, CHRISTINE.
570. Simulation of noise-power ratio with the large-signal code CHRISTINE.
571. A comparison of two-tone intermodulation experiments with CHRISTINE 1D helix TWT code simulations.
572. A 2-D fluid electron and 1-D particle ion hybrid model of ion noise in microwave tubes.
573. Measurement techniques for studying the dielectric permittivity of lossy ceramic composites used in vacuum electronics.
574. Development of high average power W-band gyro-amplifiers for radar applications.
575. Design of a Ka-band gyro-TWT for radar applications.
576. 35 GHz four cavity gyroklystron amplifier experiments.
577. Noise measurements in a Ka-band gyroklystron amplifier.
578. Applications of CTLSS to cold-test designs for vacuum electron devices.
579. CHRISTINE 3D: a 3D multi-frequency large signal simulation code for helix traveling wave tubes.
580. A design software suite for periodic permanent magnet stacks.
581. Particle pushing in the finite element gun code MICHELLE.
582. The new 3D electron gun and collector modeling tool: MICHELLE.
583. Development of design tools for vacuum electron devices.
584. A hot cathode model: effective work function, lifetime and flicker noise.
585. Design of a low-voltage W-band gyro-amplifier with depressed collector.
586. Simulation of beam collector heating patterns in small-orbit gyrodevices.
587. A microwave dielectric properties measurement system for studying composite lossy ceramics.
588. A model of ion noise in microwave tubes.
589. Relativistic plasma microwave electronics: studies of high power plasma filled backward wave oscillators.
590. Development of a 80 kW, 94 GHz gyroklystron.
591. Experimental studies of bandwidth and power production in a three-cavity, 35 GHz gyroklystron amplifier.
592. Demonstration of a high power W-band gyrotwystron amplifier.
593. Numerical simulations of gyro-amplifiers.
594. Modeling the influence of lossy dielectric loads in gyroklystron cavities.
595. An advanced electromagnetic eigenmode solver for vacuum electronics devices-CTLSS.
596. Electromagnetic properties of periodic cavities coupled to a radiating antenna.
597. Development of high-average power FEL amplifiers using sheet electron beams and short-period wigglers.
598. Nonlinear theory of the backward wave oscillator with relativistic electron beam.
599. Electron migration across transverse kicker magnet in beam collector/RF waveguide system.
600. Migration and escape of barium atoms in a thermionic cathode and their contribution to noise.
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