Modern Developments in Vacuum Electron Sources

Author:   Georg Gaertner ,  Wolfram Knapp ,  Richard G. Forbes
Publisher:   Springer Nature Switzerland AG
Edition:   1st ed. 2020
Volume:   135
ISBN:  

9783030472900


Pages:   597
Publication Date:   10 October 2020
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Modern Developments in Vacuum Electron Sources


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Author:   Georg Gaertner ,  Wolfram Knapp ,  Richard G. Forbes
Publisher:   Springer Nature Switzerland AG
Imprint:   Springer Nature Switzerland AG
Edition:   1st ed. 2020
Volume:   135
Weight:   1.081kg
ISBN:  

9783030472900


ISBN 10:   3030472906
Pages:   597
Publication Date:   10 October 2020
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

"Modern Developments in Vacuum Electron Sources 1.   1.    Historical Development and advanced new applications of Vacuum Electron  Sources (Georg Gaertner)     (15p)                                    2. State of the art and future perspectives of Scandate cathodes (Georg Gaertner, Yiman Wang)    (30p)                                            3. Review on impregnated and reservoir Ba dispenser cathodes (20+20p) (Jean-Michel Roquais, Bernard Vancil)                                       4. New developments in Ba oxide cathodes (aertner,="""" Jean-Michel Roquais, Daan den Engelsen)             (30p) 5E5. Electron sources for medical X-ray tubes (Rolf Behling)   (30p)        6. High brightness cathodes for high resolution electron beam applications (Pieter Kruit)     (35p)                                                  7. Carbon  based field emitters, properties and applications (Nicolay Egorov, Evgenij P. Sheshin, Charles Hunt) (30p)                   7b. Explosive electron emission of carbon based cathodes and applications  (Georgiy Fursey)           (24p)                              8.  8.   Photo cathodes (John Smedley, Romain Ganter, Matt Poelker)                      (30p) 9. 9..a    Progress in field electron emission science (Richard Forbes, Kevin Jensen)   Part I (basic  theory) + part II (heated conical emitters; emittance)  (20+20p) 9b. Development of Full-Scale Simulation of Field Emission Electron Sources          (Konstantin Nikiforov)      (10p)                                                                                           "

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Georg Gärtner received the degrees of Dipl.-Physiker in 1973 and Dr. rer. nat. in 1977 from the Johannes-Gutenberg University in Mainz, Germany. There he was involved in high-resolution spectroscopy of stored electrons and ions, especially in the first direct determination of the proton–electron mass-ratio. In 1978 he worked as a research associate in the Atomic physics group at Texas A&M University in the same field. In 1979 he joined Philips Research Laboratories in Aachen, Germany. There his main focuses were chemical vapor deposition (CVD) and laser ablation deposition (LAD) of thin solid films and ultrafine particles, mainly for preparation and characterization of high-power cathodes. The types of thermionic cathodes he investigated were thoriated tungsten, Ba dispenser cathodes and Ba.oxide cathodes. Since 1995 he and his coworkers have held the world record in thermionic emission, which they achieved with LAD top-layer Scandate cathodes. He also helped to develop the successful oxide plus (cermet) cathode of LG.Philips Displays. In 2004 he became visiting professor of Southeast University Nanjing. At Philips he worked on dielectric barrier discharge lamps and on OLEDs (organic light-emitting diodes). He retired in 2014 and is still active as a consultant in the field of vacuum electronics. He has authored more than 100 publications and designed 102 inventions, leading to more than 50 patents (US, WO, EU, D). He is a member of the “Deutsche Physikalische Gesellschaft” and the “American Vacuum Society” and acted as coordinator of the European section of IVESC (International Vacuum Electron Sources Conference) for 14 years.

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