Issues

 / 

2002

 / 

January

  

Instruments and methods of investigation


Positron annihilation spectroscopy in materials structure studies

,
Russian Federation State Scientific Center ‘A.I. Alikhanov Institute of Theoretical and Experimental Physics’, ul. Bolshaya Cheremushkinskaya 25, Moscow, 117259, Russian Federation

A relatively new method of materials structure analysis — positron annihilation spectroscopy (PAS) — is reviewed. Measurements of positron lifetimes, the determination of positron 3γ- and 2γ-annihilation probabilities, and an investigation of the effects of different external factors on the fundamental characteristics of annihilation constitute the basis for this promising method. The ways in which the positron annihilation process operates in ionic crystals, semiconductors, metals and some condensed matter systems are analyzed. The scope of PAS is described and its prospects for the study of the electronic and defect structures are discussed. The applications of positron annihilation spectroscopy in radiation physics and chemistry of various substances as well as in physics and chemistry of solutions are exemplified.

Fulltext pdf (346 KB)
Fulltext is also available at DOI: 10.1070/PU2002v045n01ABEH000971
PACS: 71.60.+z, 78.70.Bj, 82.55.+e (all)
DOI: 10.1070/PU2002v045n01ABEH000971
URL: https://ufn.ru/en/articles/2002/1/c/
000175529500003
Citation: Grafutin V I, Prokop’ev E P "Positron annihilation spectroscopy in materials structure studies" Phys. Usp. 45 59–74 (2002)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Графутин В И, Прокопьев Е П «Применение позитронной аннигиляционной спектроскопии для изучения строения вещества» УФН 172 67–83 (2002); DOI: 10.3367/UFNr.0172.200201c.0067

References (86) Cited by (84) ↓ Similar articles (9)

  1. Jabarov S H, Nabiyeva A Kh et al Solid State Ionics 414 116640 (2024)
  2. Ye F-J, Zhang P et al Acta Phys. Sin. 73 077801 (2024)
  3. Elnikova L V, Shevchenko V G, Kuzmenko A P Jour 14 156 (2024)
  4. Laptev R S, Pushilina N S et al J. Surf. Investig. 17 1313 (2023)
  5. Takahashi K Z 159 (8) (2023)
  6. Shokoya M M, Benkő B-M et al Pharmaceuticals 16 252 (2023)
  7. Devi A, Menon R et al Radiation Effects And Defects In Solids 178 553 (2023)
  8. Ren G, Zhang Zh et al Energy Environ. Sci. 16 565 (2023)
  9. An X, Zhang D et al Journal Of Alloys And Compounds 940 168800 (2023)
  10. Lobok M G, Bychenkov V Yu Bull. Lebedev Phys. Inst. 50 S782 (2023)
  11. Vorona M I, Lebed O A Nucl. Phys. At. Energy 24 113 (2023)
  12. An X, Zhang H et al International Journal Of Hydrogen Energy 47 8467 (2022)
  13. TORABI M, KAKUEE O et al Surf. Rev. Lett. 29 (04) (2022)
  14. Abraham A R, Nambissan P M G Design, Fabrication, and Characterization of Multifunctional Nanomaterials (2022) p. 123
  15. Chejara N, Gupta S K et al Materials Today: Proceedings 42 1651 (2021)
  16. Pogrebnjak A D, Beresnev V M et al Handbook of Modern Coating Technologies (2021) p. 177
  17. Slugeň V, Sojak S et al Metals 10 1378 (2020)
  18. Bardyshev I I, Kotenev V A Prot Met Phys Chem Surf 56 844 (2020)
  19. Perminov D A, Druzhkov A P et al Phys. Metals Metallogr. 120 284 (2019)
  20. Zon B A Russ Phys J 62 861 (2019)
  21. Shapkin N P, Khal’chenko I G et al Inorg Mater 54 965 (2018)
  22. Rempel A A, Sadovnikov S I et al Jetp Lett. 107 4 (2018)
  23. Perminov D A, Druzhkov A P, Arbuzov V L Phys. Metals Metallogr. 119 741 (2018)
  24. Murashkina T, Laptev R S et al DDF 373 317 (2017)
  25. Grafutin V I, Prokopiev E P, Khmelevsky N O J. Synch. Investig. 11 120 (2017)
  26. Pecko S, Petriska M et al Progress In Nuclear Energy 87 15 (2016)
  27. Stepanova E, Bordulev Yu et al (AIP Conference Proceedings) Vol. 1772 (2016) p. 030016
  28. Slugeň V, Pecko S, Sojak S Journal Of Nuclear Materials 468 285 (2016)
  29. Hu X, Koyanagi T et al Journal Of Nuclear Materials 470 278 (2016)
  30. Slugeň V, Gokhman O et al Radiation Effects And Defects In Solids 171 231 (2016)
  31. El’nikova L V, Funtikov Yu V J Nondestruct Eval 35 (2) (2016)
  32. Imas O N, Karataeva I Yu, Fedorov K B IOP Conf. Ser.: Mater. Sci. Eng. 142 012044 (2016)
  33. Pecko S, Sojak S, Slugeň V Nuclear Instruments And Methods In Physics Research Section B: Beam Interactions With Materials And Atoms 365 222 (2015)
  34. Shpotyuk O, Kozyukhin S A et al Semiconductors 49 298 (2015)
  35. Perminov D A, Druzhkov A P, Arbuzov V L Phys. Metals Metallogr. 116 1151 (2015)
  36. Kavetskyy T S, Tsmots V M et al Semiconductors 48 9 (2014)
  37. Shapkin N P, Ermak I M et al Russ. J. Inorg. Chem. 59 587 (2014)
  38. Zemnukhova L A, Panasenko A E et al Inorg Mater 50 75 (2014)
  39. Laptev R S, Bordulev Yu S et al AMR 880 134 (2014)
  40. Pokutnii S I, Gorbik A P Tech. Phys. 59 1753 (2014)
  41. Pogrebnjak A D, Kaverin M V, Beresnev V M Tech. Phys. 59 85 (2014)
  42. Shpotyuk O, Ingram A et al Nuclear Instruments And Methods In Physics Research Section B: Beam Interactions With Materials And Atoms 338 66 (2014)
  43. Dubov L Yu, Grafutin V I et al Nuclear Instruments And Methods In Physics Research Section B: Beam Interactions With Materials And Atoms 334 81 (2014)
  44. Pecko S, Sojak S, Slugeň V Applied Surface Science 312 172 (2014)
  45. Vlasov D V, Kryshtob V I et al J. Compos. Biodegradable Polym. 2 64 (2014)
  46. Zeman A, Chernobaeva A et al Effects of Radiation on Nuclear Materials: 25th Volume (2013) p. 85
  47. Pogrebnjak A D MSA 04 24 (2013)
  48. Grafutin V I, Prokofiev E P et al J. Synch. Investig. 7 572 (2013)
  49. Grafutin V I, El’nikova L V et al High Energy Chem 47 156 (2013)
  50. Kryukov A, Debarberis L et al Journal Of Nuclear Materials 429 190 (2012)
  51. Bordulev Yu, Laptev R et al 2012 7th International Forum on Strategic Technology (IFOST), (2012) p. 1
  52. Grafutin V I, Funtikov Yu V, Khmelevsky N O Phys. Solid State 54 28 (2012)
  53. Pogrebnjak A D, Ponomarev A G et al Uspekhi Fizicheskikh Nauk 182 287 (2012)
  54. Gorelov B M, Polovina O I et al 112 (9) (2012)
  55. Grafutin V I, Prokop’ev E P et al Phys. Atom. Nuclei 74 177 (2011)
  56. Grafutin V I, Prokop’ev E P et al J. Synch. Investig. 5 636 (2011)
  57. Grafutin V I, Meshkov I N et al Russ Microelectron 40 428 (2011)
  58. Hui L, Yundong Sh et al Nuclear Instruments And Methods In Physics Research Section A: Accelerators, Spectrometers, Detectors And Associated Equipment 625 29 (2011)
  59. Gauthier I, Hawton M Phys. Rev. A 81 (6) (2010)
  60. Funtikov Yu V, Prokopjev O V et al J. Synch. Investig. 4 609 (2010)
  61. Burcl R, Grafutin V I et al Phys. Solid State 52 700 (2010)
  62. Grafutin V I, Prokopiev E P et al Inorg Mater 46 1545 (2010)
  63. Grafutin V, Ilyukhina O et al Journal Of Nuclear Materials 406 257 (2010)
  64. Grafutin V I, Ilyukhina O V et al Phys. Atom. Nuclei 72 1672 (2009)
  65. Grafutin V I, Prokop’ev E P et al J. Synch. Investig. 3 917 (2009)
  66. Paiziev A A Nanostructured Materials for Advanced Technological Applications NATO Science For Peace And Security Series B: Physics And Biophysics Chapter 8 (2009) p. 97
  67. Saito Y, Ingram A et al Mater. Trans. 50 2341 (2009)
  68. Grafutin V I, Prokop’ev E P et al Russ Microelectron 38 418 (2009)
  69. Sedov V L Uspekhi Fizicheskikh Nauk 179 727 (2009)
  70. Nam K Y, Jeon S Ju et al Applied Radiation And Isotopes 67 1454 (2009)
  71. Grafutin V I, Zaluzhnyi A G et al J. Exp. Theor. Phys. 106 625 (2008)
  72. Prokop’ev E P, Grafutin V I et al Russ J Nondestruct Test 44 700 (2008)
  73. Leman S W, Takahashi H J Low Temp Phys 151 784 (2008)
  74. Varisov A Z, Grafutin V I et al J. Synch. Investig. 2 959 (2008)
  75. Britkov O M, Gavrilov S A et al High Energy Chem 41 48 (2007)
  76. Chaplygin Y A, Gavrilov S A et al Proceedings Of The Institution Of Mechanical Engineers, Part N: Journal Of Nanoengineering And Nanosystems 221 125 (2007)
  77. Grafutin V I, Svetlov‐Prokop’Ev E P et al Int J Of Quantum Chemistry 107 2844 (2007)
  78. Meshkov I N, Pavlov V N et al Instrum Exp Tech 50 639 (2007)
  79. Gninenko S N, Krasnikov N V et al Phys. Part. Nuclei 37 321 (2006)
  80. Grafutin V I, Ilyukhina O V et al Russ Microelectron 34 181 (2005)
  81. Gavrilov S A, Grafutin V I et al Jetp Lett. 81 548 (2005)
  82. Sachdeva A, Chavan S V et al Journal Of Solid State Chemistry 178 2062 (2005)
  83. Bokare A D, Patnaik A J. Phys. Chem. B 107 6079 (2003)
  84. Bokare A D, Patnaik A 119 4529 (2003)

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions