819 results on '"Levush, B."'
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502. Design of a 670 GHz Extended Interaction Klystron.
503. Extended Interaction Klystrons for terahertz power amplifiers.
504. High accuracy electron beam model development in michelle: Ebeam.
505. P2-29: High accuracy electron beam model development: MICHELLE eBEAM.
506. Modeling and analysis of a high current electron beam focused by a permanent-magnet quadrupole lattice in a helical traveling-wave circuit.
507. Recent progress on the development of a multiple-beam klystron with 13% bandwidth.
508. Low-voltage (≤ 20 kV) sheet beam with solenoidal focusing for w-band extended interaction klystron (EIK).
509. 220-GHZ sheet-beam extended-interaction klystron design.
510. Desgin of a 94-GHz gyrotron operating at the 4th harmonic, TE5,4-mode.
511. End-to-end analysis using MICHELLE and TESLA codes.
512. Applications and status of the finite-element MICHELLE gun & collector simulation code.
513. Characterization of a Ka-band sheet-beam coupled-cavity slow-wave structure: Simulation and experiment.
514. Sheet-beam wave interaction modeling using NEPTUNE.
515. Two dimensional modeling of drive induced oscillation in a coupled cavity TWT.
516. Single and multiple beam klystron modeling with TESLA.
517. TESLA modelling of klystrons with multigap resonators.
518. Numerical simulations of electron beam transport through a permanent-magnet quadrupole lattice for MM-wave TWT applications.
519. Frequency domain simulation of drive induced oscillation in a coupled-cavity TWT.
520. Neptune: An efficient time dependent 3D simulations of coherent radiation sources.
521. Collector design with time dependent spent beam using the Michelle code.
522. Solenoidal transport of low-voltage (≤ 20 kV) sheet beams.
523. Experimental results from an 8-beam, 5-cavity multiple-beam klystron with 6% bandwidth.
524. Detailed photoemission modeling using the 3D finite-element PIC code MICHELLE.
525. Effect of DC Space Charge Fields in the Interaction Gaps of Coupled Cavity TWTs.
526. Modeling Sheet Beam Slow Wave Interaction Structures.
527. Optimization of Electron Guns and Collectors using the 2D/3D Michelle and Anlayst Finite-Element Codes.
528. Modeling of Mode Interaction in Cylindrical and Coaxial High-Power Gyrotrons using MAGY.
529. Full 2D Model for DC Space Charge Fields in the Large-Signal Code TESLA.
530. Effect of Attenuation in Synchronous and Non-Synchronous Beam-Wave Interactions.
531. Design and Operation of an S-Band 6% Bandwidth Multiple-Beam Klystron.
532. Phase pushing measurements of a four-cavity multiple-beam klystron.
533. Power-bandwidth extension in a high power, s-band multiple-beam klystron.
534. Parallel modeling of multiple beam klystons with tesla.
535. Large signal klystron simulations using a curnow circuit model.
536. 3-d modeling of broadband multi-cavity circuits.
537. Modeling of mode competition in gyrotrons with coaxial cavities by using magy.
538. Applications of the michelle 2d/3d electron gun and collector code.
539. Computer simulations of gyrotrons with coaxial cavities.
540. TWT performance enhancement using higher-order predistortion linearization techniques.
541. Development of Magy Code for Modeling of Gyrotrons with Coaxial Cavities.
542. Model Enhancements and Optimization of the Large-Signal Code Tesla.
543. Frequency and Time Domain Modeling of Coupled Cavity Structures.
544. Applications of the Michelle 2D/3D Electron Gun and Collector Code.
545. Experimental Results from the NRL 8-Beam, 4-Cavity S-Band Multiple-Beam Klystron.
546. Rapid 3-D electromagnetic simulation of quasi-periodic structures.
547. Non-linear memory effects and digital communications in a simplified yjystron configuration.
548. Development of MAGY code for modeling of coaxial Gyrotrons.
549. Modeling of high power klystrons using TESLA.
550. Accurate 3-D simulation of coupled-cavity TWT structures.
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