High power microwave tubes : basics and trends. Volume 2 /

Volume 2 of the book begins with chapter 6, in which we have taken up conventional MWTs (such as TWTs, klystrons, including multi-cavity and multi-beam klystrons, klystron variants including reflex klystron, IOT, EIK, EIO and twystron, and crossed-field tubes, namely, magnetron, CFA and carcinotron)...

Πλήρης περιγραφή

Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριος συγγραφέας: Kesari, Vishal (συγγραφέας.)
Άλλοι συγγραφείς: Basu, B. N. (συγγραφέας.)
Μορφή: Ηλ. βιβλίο
Γλώσσα:English
Έκδοση: San Rafael [Καλιφόρνια] : Morgan & Claypool Publishers, c2017.
Σειρά:IOP concise physics.
Θέματα:
Διαθέσιμο Online:http://iopscience.iop.org/book/978-1-6817-4704-0
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245 1 0 |a High power microwave tubes :  |b basics and trends.  |n Volume 2 /  |c Vishal Kesari, B.N. Basu. 
260 |a San Rafael [Καλιφόρνια] :   |b Morgan & Claypool Publishers,  |c c2017. 
300 |a 1 ηλεκτρονική πηγή (ποικίλες σελιδαριθμήσεις) :  |b εικ (μερ. έγχρ.). 
490 1 |a IOP concise physics,  |x 2053-2571 
504 |a Περιλαμβάνει βιβλιογραφικές παραπομπές. 
505 0 |a 6. Qualitative description of conventional and familiar microwave tubes -- 6.1. Travelling-wave tubes -- 6.2. Klystrons -- 6.3. Klystron variants -- 6.4. Crossed-field tubes 
505 8 |a 7. Fast-wave tubes -- 7.1. Cyclotron resonance maser (CRM) and Weibel instabilities -- 7.2. Gyrotron -- 7.3. Gyro-backward-wave oscillator -- 7.4. Gyro-klystron -- 7.5. Gyro-travelling-wave tube -- 7.6. Cyclotron auto-resonance maser (CARM) -- 7.7. Slow-wave cyclotron amplifier (SWCA) -- 7.8. Hybrid gyro-tubes -- 7.9. Peniotron 
505 8 |a 8. Vacuum microelectronic, plasma-filled and high power microwave (HPM) tubes -- 8.1. Vacuum microelectronic (VME) MWTs -- 8.2. Plasma-filled MWTs -- 8.3. High power microwave (HPM) MWTs 
505 8 |a 9. Frequency and power ranges of common microwave tubes -- 10. Epilogue. 
520 3 |a Volume 2 of the book begins with chapter 6, in which we have taken up conventional MWTs (such as TWTs, klystrons, including multi-cavity and multi-beam klystrons, klystron variants including reflex klystron, IOT, EIK, EIO and twystron, and crossed-field tubes, namely, magnetron, CFA and carcinotron). In chapter 7, we have taken up fast-wave tubes (such as gyrotron, gyro-BWO, gyro-klystron, gyro-TWT, CARM, SWCA, hybrid gyro-tubes and peniotron). In chapter 8, we discuss vacuum microelectronic tubes (such as klystrino module, THz gyrotron and clinotron BWO); plasma-assisted tubes (such as PWT, plasma-filled TWT, BWO, including PASOTRON, and gyrotron); and HPM (high power microwave) tubes (such as relativistic TWT, relativistic BWO, RELTRON (variant of relativistic klystron), relativistic magnetron, high power Cerenkov tubes including SWO, RDG or orotron, MWCG and MWDG, bremsstrahlung radiation type tube, namely, vircator, and M-type tube MILO). In Chapter 9, we provide handy information about the frequency and power ranges of common MWTs, although more such information is provided at relevant places in the rest of the book as and where necessary. Chapter 10 is an epilogue that sums up the authors' attempt to bring out the various aspects of the basics of and trends in high power MWTs. 
650 0 |a Μικροκυματικές λυχνίες  |9 174541 
700 |a Basu, B. N.  |e συγγραφέας.  |9 174539 
830 0 |a IOP concise physics. 
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