Victor V. Apollonov, Sergey Yu. Kazantsev
High-Energy Ecologically Safe HF/DF Lasers (eBook, PDF)
Physics of Self-Initiated Volume Discharge-Based HF/DF Lasers
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Victor V. Apollonov, Sergey Yu. Kazantsev
High-Energy Ecologically Safe HF/DF Lasers (eBook, PDF)
Physics of Self-Initiated Volume Discharge-Based HF/DF Lasers
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Explores new principles of Self-Initiating-Volume Discharge (SIVD) for creating high-energy non-chain HF(DF) lasers and creation of efficient lasers with high energy output and radiation power in the spectral region of 2.6-5 µm. Potential applications include remote sensing of the atmosphere, medicine, biological imaging and precision machining.
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- Größe: 11.18MB
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Explores new principles of Self-Initiating-Volume Discharge (SIVD) for creating high-energy non-chain HF(DF) lasers and creation of efficient lasers with high energy output and radiation power in the spectral region of 2.6-5 µm. Potential applications include remote sensing of the atmosphere, medicine, biological imaging and precision machining.
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Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 226
- Erscheinungstermin: 13. Februar 2020
- Englisch
- ISBN-13: 9781000066173
- Artikelnr.: 58656126
- Verlag: Taylor & Francis
- Seitenzahl: 226
- Erscheinungstermin: 13. Februar 2020
- Englisch
- ISBN-13: 9781000066173
- Artikelnr.: 58656126
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Victor V. Apollonov, Professor, General Physics Institute RAS, Russia. Apollonov V.V. is the leading specialist in the area of basic principles of creation and development of high power laser systems and high power laser radiation interaction with matter. He has made an outstanding input into creation and development of new branches of science - physical and technical fundamentals of high power laser optics and adaptive optics, investigation of physical processes in a high volume self-controlled volume discharges, creation of high power continuous wave, pulsed and high repetition rate pulse-periodic laser systems, high intensity laser radiation interaction with matter, high power laser application for an effective protection of valuable objects and water surface cleaning from oil films, medical applications for UV lasers. Recent results of his investigations related to the laser diode arrays phase-locking, mechanisms of shock waves merging for a rockets launch by high repetition rate pulse-periodic laser light, super long conductive channel based on the electrical breakdown in a dust plasma produced by mechanism of ablation, high repetition rate optical pulsating discharge applications, space debris elimination by laser, scalable mono-module disk laser and high power laser applications in the Arctic are under very intensive implementation in Russia and abroad. He is the author of more than 23 books, 800 presentations and 148 patents, as well as 954 journal articles. Apollonov V.V. is a high profile scientist and well known around all over the world, for his more than 49 years of international scientific activity, he has participated and organized more than 60 international conferences, symposiums and workshops, and prepared 32 doctoral candidates in physics and mathematics. For the last 5 years his scientific group has fulfilled more than 60 R and D contracts with customers from Japan, UK, Germany, France, China, Korea, Singapore and USA. He is the General Director of "Energomashtechnika" Ltd. Apollonov V.V. is the member of European and American Physical Society, SPIE, AIAA, American Society for QE and the member of specialized scientific council of Russia. He is a full member of Russian Academy of Natural Science and Academy of Engineering Sciences, member of the Presidium RANS. He is the laureate of State Prize of USSR (1982), of Russia (2001) and ECOWORLD-2017 International prize.
Introduction. High Energy Non
Chain HF(DF) Lasers. Self
Initiated Volume Discharge in a Working Mixture of Non
Chain HF(DF) Lasers. Effect of the Current Density Restriction in the Diffuse Channel. SIVD Plasma Instabilities in a Working Mixture of the Non
Chain HF(DF) Lasers. Pulsed And P
P Non
Chain HF(DF) Lasers. Non
Chain HF(DF) Laser Applications. Conclusion
Chain HF(DF) Lasers. Self
Initiated Volume Discharge in a Working Mixture of Non
Chain HF(DF) Lasers. Effect of the Current Density Restriction in the Diffuse Channel. SIVD Plasma Instabilities in a Working Mixture of the Non
Chain HF(DF) Lasers. Pulsed And P
P Non
Chain HF(DF) Lasers. Non
Chain HF(DF) Laser Applications. Conclusion
Introduction. High Energy Non
Chain HF(DF) Lasers. Self
Initiated Volume Discharge in a Working Mixture of Non
Chain HF(DF) Lasers. Effect of the Current Density Restriction in the Diffuse Channel. SIVD Plasma Instabilities in a Working Mixture of the Non
Chain HF(DF) Lasers. Pulsed And P
P Non
Chain HF(DF) Lasers. Non
Chain HF(DF) Laser Applications. Conclusion
Chain HF(DF) Lasers. Self
Initiated Volume Discharge in a Working Mixture of Non
Chain HF(DF) Lasers. Effect of the Current Density Restriction in the Diffuse Channel. SIVD Plasma Instabilities in a Working Mixture of the Non
Chain HF(DF) Lasers. Pulsed And P
P Non
Chain HF(DF) Lasers. Non
Chain HF(DF) Laser Applications. Conclusion