Pulsed Power

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Gewicht:
1311 g
Format:
256x173x42 mm
Beschreibung:

Comprehensive coverage of all aspects of pulsed power
PrefacePart 1: Pulsed Systems: Design Principles1. Lumped Parameter Pulse Systems2. Pulse Generation Using Long LinesPart 2: Physics of Pulsed Electrical Discharges3. The Vacuum Discharge4. The Pulsed Discharge in Gas5. Electrical Discharges in LiquidsPart 3: Properties of Coaxial Lines6. Solid-Insulated Coaxial Lines7. Liquid-Insulated Lines8. Vacuum Lines with Magnetic Self-InsulationPart 4: Spark Gap Switches9. High-Pressure Gas Gaps10. Low-Pressure Spark Gaps11. Solid-State and Liquid Spark GapsPart 5: Generators with Plasma Closing Switches12. Generators with Gas-Discharge Switches13. Marx Generators14. Pulse TransformersPart 6: Generators with Plasma Opening Switches15. Pulse Generators with Electrically Exploded Conductors16. Pulse Generators with Plasma Opening Switches17. Electron-Triggered Gas-Discharge SwitchesPart 7: Pulse Power Generators with Solid-State Switches18. Semiconductor Closing Switches19 Semiconductor Opening Switches20. Pulse Power Generators in Circuits with Magnetic Elements21. Long Lines with Nonlinear ParametersPart 8: Electron Diodes and Electron-Diode-Based Accelerators22. Large-Cross-Section Electron Beams23. Annular Electron Beams24. Dense Electron Beams and Their FocusingPart 9: High-Power Pulse Sources of Electromagnetic Radiation25. High-Power X-Ray Pulses26. High-Power Pulsed Gas Lasers27. Generation of High-Power Pulsed Microwaves28. Generation of Ultrawideband Radiation PulsesIndex

Mesyats' Pulsed Power provides in-depth coverage of the generation of pulsed electric power, electron and ion beams, and various types of pulsed electromagnetic radiation. The electric power that can be produced by the methods described ranges from 106 to 1014W for pulse durations of 10-10-10-7s.

The book consists of nine parts containing 28 chapters, which deal with various aspects of pulsed power and high-power electronics and cover a concise theory of electric circuits as applied to nanosecond pulse technology; physics of fast processes occurring in electrical discharges in vacuum, gases, and liquids; phenomena in long lines; mechanisms of operation and designs of high-power gas-discharge, plasma, and semiconductor closing and opening switches as well as of high-power electric pulse generators using these switches; solid-state (semiconductor and magnetic) methods of production and transformation of nanosecond high-power pulses; and methods of production of high-power pulsed electron and ion beams. The closing part describes methods applied to produce high-power nanosecond pulsed X-rays, laser beams, microwaves, and ultrawideband electromagnetic radiation.

This all-embracing book covers gas, laser, semiconductor, and magnetic circuit elements, the phenomenon of explosive electron emission discovered by the author, diodes of various types, including semiconductor diodes based on the SOS effect discovered with participation of the author, and methods of production of various types of high-power pulsed radiation.

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