Advances in Electronics and Electron Physics ( Volume 28A )

Publication series :Volume 28A

Author: Mcgee   J. D.;Mcmullan   D.;Kahan   E.  

Publisher: Elsevier Science‎

Publication year: 1969

E-ISBN: 9780080576909

P-ISBN(Paperback): 9780120145287

P-ISBN(Hardback):  9780120145287

Subject: TP301.6 algorithm theory;TP31 computer software

Language: ENG

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Description

Advances in Electronics and Electron Physics

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 18

List of Contributors

pp.:  6 – 14

Foreword

pp.:  14 – 16

Preface

pp.:  16 – 22

Contents

pp.:  18 – 6

Contents of Volume B

pp.:  22 – 26

Chapter 2. Large-image Electronographic Camera

pp.:  44 – 52

Chapter 3. Sur Quelques Progrés Récents Apportés á la Caméra Électronique á Focalisation Électrostatique et sur son Application en Physique et en Astronomie

pp.:  52 – 64

Chapter 4. Electronic Cameras for Space Research

pp.:  64 – 72

Chapter 5. A High-resolution Image Tube for Integrated Circuit Fabrication

pp.:  72 – 86

Chapter 6. Further Developments of the Spectracon

pp.:  86 – 106

Chapter 7. Cathode-ray Tube with Thin Electron-permeable Window

pp.:  106 – 114

Chapter 8. Cascade Image Intensifier Developments

pp.:  114 – 130

Chapter 9. A Family of Multi-stage Direct-view Image Intensifiers with Fiber-optic Coupling

pp.:  130 – 144

Chapter 10. Some Aspects of the Design and Manufacture of a Fibre-optic Coupled Cascade Image Intensifier

pp.:  144 – 154

Chapter 11. A Proximity-focused Image Tube

pp.:  154 – 162

Chapter 12. INTIC, an Image INTensifying, Integrating and Contrast-enhancing Storage Tube

pp.:  162 – 176

Chapter 13. A Light Amplifier with High Light Output

pp.:  176 – 184

Chapter 14. SEC Camera-tube Performance Characteristics and Applications

pp.:  184 – 198

Chapter 15. Some Properties of SEC Targets

pp.:  198 – 214

Chapter 16. Newly Developed Image Orthicon Tube with a MgO Target

pp.:  214 – 216

Chapter 17. Electrostatically Scanned Image Orthicon

pp.:  216 – 234

Chapter 18. The Development of Image Isocons for Low-light Applications

pp.:  234 – 254

Chapter 19. Dynamic Imaging with Television Cameras

pp.:  254 – 262

Chapter 20. Beam-discharge Lag in a Television Pick-up Tube

pp.:  262 – 272

Chapter 21. A 13-mm All-Electrostatic Vidicon

pp.:  272 – 278

Chapter 22. An Infra-red Sensitive Vidicon With a New Type of Target

pp.:  278 – 290

Chapter 23. Récherche d'un Dispositif Nouveau de Télévision Thermique

pp.:  290 – 298

Chapter 24. Un Tube de Prise de Vues Sensible aux Rayons X

pp.:  298 – 306

Chapter 25. Adjustable Saturation in a Pick-up Tube with Linear Light Transfer Characteristic

pp.:  306 – 314

Chapter 26. Measurement of TV Camera Noise

pp.:  314 – 322

Chapter 27. An Electromechanical Picture Signal Generating Device

pp.:  322 – 334

Chapter 28. Effects of Caesium Vapour upon the Target Glass of Image Orthicons

pp.:  334 – 348

Chapter 29. Research on Photocathodes in Czechoslovakia

pp.:  348 – 362

Chapter 30. Crystal Structure of Multialkali Photocathodes

pp.:  362 – 372

Chapter 31. Some Properties of the Trialkali Sb-K-Rb-Cs Photocathode

pp.:  372 – 382

Chapter 32. Decay of S·20 Photocathode Sensitivity Due to Ambient Gases

pp.:  382 – 392

Chapter 33. A New Technology for Transferring Photocathodes

pp.:  392 – 400

Chapter 34. Improvements to Photocathodes for Pulse Operation

pp.:  400 – 406

Chapter 35. Some Getter Materials for Caesium Vapour

pp.:  406 – 418

Chapter 36. New Approaches to Photoemission at Long Wavelengths

pp.:  418 – 424

Chapter 37. Gallium Arsenide Thin-film Photocathodes

pp.:  424 – 434

Chapter 38. Étude de l'Émission Photoélectrique des Structures Métal-Isolant-Métal

pp.:  434 – 444

Chapter 39. Interference Photocathodes

pp.:  444 – 458

Chapter 40. The Development and Application of Interference Photocathodes for Image Tubes

pp.:  458 – 468

Chapter 41. Image Intensifier System Using Reflective Photocathode

pp.:  468 – 476

Chapter 42. Scintillation Processes in Thin Films of CsI(Na) and CsI(Tl) due to Low Energy X-Rays, Electrons and Protons

pp.:  476 – 486

Chapter 43. Quelques Aspects des Essais de Dépôt de Photocathodes S·20 et d'Écrans Fluorescents sur Fibres Optiques

pp.:  486 – 496

Chapter 44. Channel Multiplier Plates for Imaging Applications

pp.:  496 – 512

Chapter 45. An Analysis of the Low-level Performance of Channel Multiplier Arrays

pp.:  512 – 524

Chapter 46. Quelques Problémes Concernant les Multiplicateurs Canalisés pour Intensificateur d'Image

pp.:  524 – 532

Chapter 47. Effects of Vacuum Space Charge in Channel Multipliers

pp.:  532 – 538

Chapter 48. Statistics of Transmitted Secondary Electron Emission

pp.:  538 – 548

Chapter 49. Two Methods for the Determination of the Imaging Properties of Electron-optical Systems with a Photocathode

pp.:  548 – 560

Chapter 50. Computation of Imaging Properties of Image Tubes from an Analytic Potential Representation

pp.:  560 – 562

Chapter 51. The Design of Electrostatic Zoom Image Intensifiers

pp.:  562 – 570

Chapter 52. Electron Optics of a Photoconductive Image Converter

pp.:  570 – 578

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