Skip to main content
Log in

Exciplex lasers

  • Published:
Journal of Soviet Laser Research Aims and scope

Abstract

Experiments on lasers based on diatomic exciplex molecules are briefly reviewed. The optical characteristics of the laser transitions, the experimental conditions of obtaining lasing, the mechanism of formation of the working-state populations, the character of the disequilibrium of the active medium, and the new laser media proposed in the literature are considered. Tables listing detailed data on excimer and exciplex lasers are presented.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

Literature Cited

  1. J. B. Birks, Mol. Photochem.,1, 157 (1969).

    Google Scholar 

  2. J. B. Birks, in: The Exciplex, Academic Press, New York-San Francisco-London (1975), pp. 39–74.

    Google Scholar 

  3. S. K. Searles, Appl. Phys. Lett.,28, 602–603 (1976).

    Google Scholar 

  4. L. I. Gudzenko, L. A. Shelepin, and S. I. Yakovlenko, Usp. Fiz. Nauk,114, 457–485 (1974).

    Google Scholar 

  5. L. I. Gudzenko, I. S. Lakoba, and S. I. Yakovlenko, Tr. Fiz. Inst. Akad. Nauk,90, 61–90 (1976).

    Google Scholar 

  6. L. I. Gudzenko,and S. I. Yakovlenko, Plasma Lasers [in Russian], Atomizdat, Moscow (1978).

    Google Scholar 

  7. S. I. Yakovlenko, Preprint IAE-2174, Moscow (1972).

  8. A. W. Johnson and J. B. Gerardo, J. Chem. Phys.,59, 1738–1741 (1973).

    Google Scholar 

  9. D. J. Bradley, M. H. R. Hutchinson, and H. Koetser, Opt. Commun.,7, 187–190 (1973).

    Google Scholar 

  10. W. H. Weihofen, J. Chem. Phys.,60, 445–453 (1974).

    Google Scholar 

  11. A. W. Johnson and J. B. Gerardo, in: XI Int. Conf. on Phenomena in Ionized Gases, Contrib. Pap., Prague (1973), pp. 64–65.

  12. J. B. Gerardo and A. W. Johnson, J. Appl. Phys.,44, 4120–4124 (1973).

    Google Scholar 

  13. F. Mies, Mol. Phys.,26, 1233–1246 (1973).

    Google Scholar 

  14. T. Oka, K. V. S. Rama Rao, J. L. Redpath, and R. F. Firestone, J. Chem. Phys.,61, 4740–4746 (1974).

    Google Scholar 

  15. L. A. Schlie, B. D. Guenther, and R. D. Rathge, Appl. Phys. Lett.,28, 393–396 (1976).

    Google Scholar 

  16. R. Burnham and N. W. Harris, J. Chem. Phys.,66, 2742–2743 (1977).

    Google Scholar 

  17. J. G. Eden and S. K. Searles, Appl. Phys. Lett.,30, 287–289 (1977).

    Google Scholar 

  18. C. A. Brau and J. J. Ewing, Appl. Phys. Lett.,27, 435–437 (1975).

    Google Scholar 

  19. R. Burnham, F. X. Powell, and N. Djeu, Appl. Phys. Lett.,29, 30–32 (1976).

    Google Scholar 

  20. R. Burnham and S. K. Searles, J. Chem. Phys.,67, 5967–5968 (1977).

    Google Scholar 

  21. J. G. Eden, R. W. Waynant, S. K. Searles, and R. Burnham, Appl. Phys. Lett.,32, 733–735 (1978).

    Google Scholar 

  22. R. S. Bradford, E. R. Ault, and M. L. Bhaumik, Opt. Commun.,18, 116–117 (1976).

    Google Scholar 

  23. A. M. Hawryluk, J. A. Mangano, and J. H. Jacob, Appl. Phys. Lett.,31, 164–167 (1977).

    Google Scholar 

  24. J. A. Mangano, J. H. Jacob, M. Rokni, and A. M. Hawryluk, Appl. Phys. Lett.,31, 26–28 (1977).

    Google Scholar 

  25. S. K. Searles, G. A. Hart, Appl. Phys. Lett.,27, 243–245 (1975).

    Google Scholar 

  26. J. Tellinghuisen, A. K. Hays, J. M. Hoffman, and G. C. Tisone, J. Chem. Phys.,65, 4473–4482 (1976).

    Google Scholar 

  27. I. S. Datskevich, V. S. Zuev, L. D. Mikheev, and I. V. Pogorel'skii, Kvantovaya Elektron. (Moscow),5, 1456–1464 (1978).

    Google Scholar 

  28. D. L. Cunningham and K. C. Clark, J. Chem. Phys.,61, 1118–1124 (1974).

    Google Scholar 

  29. W. M. Hughes, N. T. Olson, and R. Hunter, Appl. Phys. Lett.,28, 81–83 (1976).

    Google Scholar 

  30. C. Duzy and H. A. Hyman, Chem. Phys. Lett.,52, 345–348 (1977).

    Google Scholar 

  31. J. H. Parks, Appl. Phys. Lett.,31, 297–300 (1977).

    Google Scholar 

  32. Y. S. Kim and R. G. Gordon, J. Chem. Phys.,61, 1–16 (1974).

    Google Scholar 

  33. W. J. Stevens, M. Gardner, A. Karo, and P. Julienne, J. Chem. Phys.,67, 2860–2867 (1977).

    Google Scholar 

  34. F. Spiegelmann and J. P. Malrieu, Chem. Phys. Lett.,58, 214–219 (1978).

    Google Scholar 

  35. T. H. Dunning and P. J. Hay, Appl. Phys. Lett.,28, 649–651 (1976).

    Google Scholar 

  36. P. J. Hay and T. H. Dunning, J. Chem. Phys.,66, 1306–1316 (1977).

    Google Scholar 

  37. L. E. Brus, J. Mol. Spectrosc.,64, 376–381 (1977).

    Google Scholar 

  38. J. Goodman, J. C. Tully, V. E. Bondibey, and L. E. Brus, J. Chem. Phys.,66, 4802–4810 (1977).

    Google Scholar 

  39. T. H. Dunning and P. J. Hay, J. Chem. Phys.,66, 3767–3777 (1977).

    Google Scholar 

  40. L. I. Gudzenko, I. S. Lakoba, Yu. I. Syts'ko, and S. I. Yakovlenko, Preprint IAE-2912, Moscow (1977).

  41. K. J. McCann and M. R. Flannery, Appl. Phys. Lett.,31, 599–601 (1977).

    Google Scholar 

  42. R. M. Hill, D. J. Eckstrom, D. C. Lorents, and H. H. Nakano, Appl. Phys. Lett.,23, 373–374 (1973).

    Google Scholar 

  43. D. E. Rothe, Phys. Rev.,177, 93–96 (1969).

    Google Scholar 

  44. A. Mandl, Phys. Rev.,A3, 251–255 (1971).

    Google Scholar 

  45. J. T. Moseley, R. P. Saxon, B. A. Huber, et al., J. Chem. Phys.,67, 1659–1668 (1977).

    Google Scholar 

  46. W. R. Wadt, D. C. Cartwright, and J. C. Cohen, Appl. Phys. Lett.,31, 672–674 (1977).

    Google Scholar 

  47. C. F. Bender and N. W. Winter, Appl. Phys. Lett.,33, 29–31 (1978).

    Google Scholar 

  48. J. A. Vanderhoff, J. Chem. Phys.,68, 3311–3312 (1978).

    Google Scholar 

  49. T. G. Finn, L. J. Palumbo, and L. F. Champagne, Appl. Phys. Lett.,33, 148–151 (1978).

    Google Scholar 

  50. M. Rokni, J. H. Jacob, and J. A. Mangano, Appl. Phys. Lett.,32, 622–624 (1978).

    Google Scholar 

  51. H. A. Koehler, L. J. Ferderber, R. L. Redhead, and P. J. Ebert, Appl. Phys. Lett.,21, 198–200 (1972).

    Google Scholar 

  52. P. W. Hoff, J. C. Swingle, and C. K. Rhodes, Opt. Commun.,8, 128–131 (1973).

    Google Scholar 

  53. P. W. Hoff, J. C. Swingle, and C. K. Rhodes, Appl. Phys. Lett.,23, 245–248 (1973).

    Google Scholar 

  54. W. H. Hughes, J. Shannon, A. Kolb, et al., Appl. Phys. Lett.,23, 385–389 (1973).

    Google Scholar 

  55. E. R. Ault, M. L. Bhaumik, and W. M. Hughes et al., IEEE J. Quantum Electron.,QE-9, 1031–1032 (1973).

    Google Scholar 

  56. M. Novaro and F. Lagarde, C. R. Acad. Sci., Ser. B.,277, 671–673 (1973).

    Google Scholar 

  57. S. C. Wallace, R. W. Dreyfus, and R. T. Hodgson, Appl. Phys. Lett.,23, 672–674 (1973).

    Google Scholar 

  58. P. J. Ebert, L. J. Ferderber, H. A. Koehler, et al., IEEE J. Quantum Electron.,QE-10, 736–737 (1974).

    Google Scholar 

  59. A. W. Johnson and J. B. Gerardo, J. Appl. Phys.,45, 867–872 (1974).

    Google Scholar 

  60. D. J. Bradley, D. R. Hull, M. H. R. Hutchinson, and M. W. McGeoch, Opt. Commun.,11, 335–338 (1974).

    Google Scholar 

  61. W. M. Hughes, J. Shannon, and R. Hunter, Appl. Phys. Lett.,25, 85–87 (1974).

    Google Scholar 

  62. S. C. Wallace and R. W. Dreyfus, Appl. Phys. Lett.,25, 498–500 (1974).

    Google Scholar 

  63. D. J. Bradley, D. R. Hull, M. H. R. Hutchinson, and M. W. McGeoch, Opt. Commun.,14, 1–3 (1975).

    Google Scholar 

  64. N. G. Basov, V. A. Danilychev, and V. A. Dolgikh, et al., Kvantovaya Elektron. (Moscow),2, 28–32 (1975).

    Google Scholar 

  65. C. E. Turner, Appl. Phys. Lett.,31, 659–661 (1977).

    Google Scholar 

  66. F. Collier and P. Cottin, Opt. Commun.,25, 89–92 (1978).

    Google Scholar 

  67. W. M. Hughes, J. Shannon, and R. Hunter, Appl. Phys. Lett.,28, 488–491 (1974).

    Google Scholar 

  68. C. B. Collins, A. J. Cunningham, S. M. Curry, et al., Appl. Phys. Lett.,24, 245–247 (1974).

    Google Scholar 

  69. E. R. Ault, R. S. Bradford, and M. L. Bhaumik, Appl. Phys. Lett.,27, 413–415 (1975).

    Google Scholar 

  70. R. Burnham, N. W. Harris, and N. Djeu, Appl. Phys. Lett.,28, 86–87 (1978).

    Google Scholar 

  71. C. P. Wang, H. Mirels, D. C. Sutton, and S. N. Suchard, Appl. Phys. Lett.,28, 326–328 (1976).

    Google Scholar 

  72. B. Goddard and M. Vannier, Opt. Commun.,18, 206–207 (1976).

    Google Scholar 

  73. V. N. Ishchenko, V. N. Lisitsyn, and A. M. Razhev, Pis'ma Zh. Tekh. Fiz.,2, 839–841 (1976).

    Google Scholar 

  74. C. P. Wang, Appl. Phys. Lett.,29, 103–105 (1976).

    Google Scholar 

  75. C. P. Christensen, L. W. Braverman, W. H. Steier, and C. Wittig, Appl. Phys. Lett.,29, 424–425 (1976).

    Google Scholar 

  76. J. A. Mangano, J. H. Jacob, and J. B. Dodge, Appl. Phys. Lett.,29, 426–428 (1976).

    Google Scholar 

  77. N. G. Basov, A. N. Brunin, V. A. Danilychev, et al., Pis'ma Zh. Tekh. Fiz.,2, 1057–1062 (1976).

    Google Scholar 

  78. R. Burnham and N. Djeu, Appl. Phys. Lett.,29, 707–709 (1976).

    Google Scholar 

  79. Yu. A. Kudryavtsev and N. P. Kuz'mina, Kvantovaya Elektron. (Moscow),4, 220–222 (1977).

    Google Scholar 

  80. I. V. Tomov, R. Fedosejevs, M. C. Richardson, et al., Appl. Phys. Lett.,30, 146–148 (1977).

    Google Scholar 

  81. L. F. Champagne, J. G. Eden, N. V. Harris, et al., Appl. Phys. Lett.,30, 160–161 (1977).

    Google Scholar 

  82. T. J. McKee, B. P. Stoicheff, and S. C. Wallace, Appl. Phys. Lett.,30, 278–280 (1977).

    Google Scholar 

  83. C. P. Christensen, Appl. Phys. Lett.,30, 483–485 (1977).

    Google Scholar 

  84. W. J. Sarjeant, A. J. Alcock, and K. E. Leopold, Appl. Phys. Lett.,30, 635–637 (1977).

    Google Scholar 

  85. C. H. Fisher and R. E. Center, Appl. Phys. Lett.,31, 106–108 (1977).

    Google Scholar 

  86. S. Watanabe, T. Sato, and H. Kashiwagi, Opt. Commun.,22, 143–146 (1977).

    Google Scholar 

  87. D. E. Rothe and R. A. Gibson, Opt. Commun.,22, 265–268 (1977).

    Google Scholar 

  88. V. Hasson, C. M. Lee, R. Exberger, et al., Appl. Phys. Lett.,31, 167–169 (1977).

    Google Scholar 

  89. L. F. Champagne and N. W. Harris, Appl. Phys. Lett.,31, 513–515 (1977).

    Google Scholar 

  90. Yu. I. Bychkov, N. V. Karlov, I. N. Konovalov, et al., Pis'ma Zh. Tekh. Fiz.,3, 1041–1044 (1977).

    Google Scholar 

  91. I. M. Isakov, A. G. Loenov, and V. E. Ogluzdin, Pis'ma Zh. Tekh. Fiz.,3, 1066–1069 (1977).

    Google Scholar 

  92. J. Goldhar, J. Dickie, L. P. Bradley, and L. D. Pleasance, Appl. Phys. Lett.,31, 677–679 (1977).

    Google Scholar 

  93. N. G. Basov, V. S. Zuev, L. D. Mikheev, et al., Kvantovaya Elektron. (Moscow),4, 2453 (1977).

    Google Scholar 

  94. B. Fontaine and B. Forestier, Opt. Commun.,25, 97–99 (1978).

    Google Scholar 

  95. V. Yu. Baranov, V. M. Borisov, F. N. Vysikailo, et al., in: Second All-Union Seminar on Physical Processes in Gas Lasers: Abstracts of Papers, Uzhgorod (1978), pp. 102–104.

  96. C. P. Wang, Kvantovaya Elektron. (Moscow),5, 1771–1774 (1978).

    Google Scholar 

  97. C. P. Wang, Appl. Phys. Lett.,32, 360–362 (1978).

    Google Scholar 

  98. J. J. Ewing and C. A. Brau, Appl. Phys. Lett.,27, 350–353 (1975).

    Google Scholar 

  99. G. C. Tisone, A. K. Hays, and J. M. Hoffman, Opt. Commun.,15, 188–189 (1975).

    Google Scholar 

  100. J. A. Mangano and J. H. Jacob, Appl. Phys. Lett.,27, 495–498 (1975).

    Google Scholar 

  101. E. R. Ault, M. L. Bhaumik, and R. S. Bradford, Bull. Am. Phys. Soc.,21, 169 (1976).

    Google Scholar 

  102. M. L. Bhaumik, R. S. Bradford, and E. R. Ault, Appl. Phys. Lett.,28, 23–25 (1976).

    Google Scholar 

  103. D. G. Sutton, N. S. Suchard, D. L. Gibb, and C. P. Wang, Appl. Phys. Lett.,28, 522–523 (1976).

    Google Scholar 

  104. J. M. Hoffman, A. K. Hays, and G. C. Tisone, Appl. Phys. Lett.,28, 538–539 (1976).

    Google Scholar 

  105. N. G. Basov, A. N. Brunin, V. A. Danilychev, et al., Pis'ma Zh. Tekh. Fiz.,3, 1297–1301 (1977).

    Google Scholar 

  106. A. J. Andrews, A. J. Kearsley, C. E. Webb, and S. C. Haydon, Opt. Commun.,20, 265–268 (1977).

    Google Scholar 

  107. W. J. Sarjeant, A. J. Alcock, and K. E. Leopold, IEEE J. Quantum Electron.,QE-14, 177–184 (1978).

    Google Scholar 

  108. T. R. Loree, K. B. Butterfield, and D. L. Barker, Appl. Phys. Lett.,32, 171–173 (1978).

    Google Scholar 

  109. S. Watanabe, S. Shiratori, T. Sato, and H. Kashiwagi, Appl. Phys. Lett.,33, 141–143 (1978).

    Google Scholar 

  110. R. W. Waynant, Appl. Phys. Lett.,30, 234–235 (1977).

    Google Scholar 

  111. J. Tellinghuisen, J. M. Hoffman, G. C. Tisone, and A. K. Hays, J. Chem. Phys.,64, 2484–2490 (1976).

    Google Scholar 

  112. V. N. Ischenko, V. N. Lisitsyn, and A. M. Razhev, Opt. Commun.,21, 30–32 (1977).

    Google Scholar 

  113. Yu. I. Bychkov, V. F. Losev, G. A. Mesyats, and V. F. Tarasenko, Pis'ma Zh. Tekh. Fiz.,3, 1233–1236 (1977).

    Google Scholar 

  114. R. Burnham, Opt. Commun.,24, 161–163 (1978).

    Google Scholar 

  115. Yu. I. Bychkov, N. V. Karlov, V. F. Losev, et al., Pis'ma Zh. Tekh. Fiz.,4, 83–86 (1978).

    Google Scholar 

  116. M. Maeda, T. Yamishita, and Y. Miyazoe, Jpn. J. Appl. Phys.,17, 969–970 (1978).

    Google Scholar 

  117. J. I. Levatter, J. H. Morris, and Shao-Chi Lin, Appl. Phys. Lett.,32, 630–632 (1978).

    Google Scholar 

  118. P. Burlamacchi and R. Salimbeni, Opt. Commun.,26, 233–236 (1978).

    Google Scholar 

  119. J. R. Murray and H. T. Powell, Appl. Phys. Lett.,29, 252–253 (1976).

    Google Scholar 

  120. J. G. Eden and S. K. Searles, Appl. Phys. Lett.,29, 350–352 (1976).

    Google Scholar 

  121. R. Waynant, Kvantovaya Elektron. (Moscow),5, 1767–1770 (1978).

    Google Scholar 

  122. J. G. Eden and R. Waynant, J. Chem. Phys.,68, 2850–2854 (1978).

    Google Scholar 

  123. H. T. Powell, J. R. Murray, and C. K. Rhodes, Appl. Phys. Lett.,25, 730–732 (1974).

    Google Scholar 

  124. N. G. Basov, Yu. A. Babeiko, V. S. Zuev, et al., Kvantovaya Elektron. (Moscow),3, 930–931 (1976).

    Google Scholar 

  125. A. W. Johnson, J. B. Gerardo, E. L. Patterson, et al., Kvantovaya Elektron. (Moscow),3, 914–922 (1976).

    Google Scholar 

  126. J. H. Parks, Appl. Phys. Lett.,31, 192–194 (1977).

    Google Scholar 

  127. J. G. Eden, Appl. Phys. Lett.,31, 448–450 (1977).

    Google Scholar 

  128. K. Y. Tang, R. O. Hunter, and J. Oldenettel, Appl. Phys. Lett.,32, 226–228 (1978).

    Google Scholar 

  129. W. T. Whitney, Appl. Phys. Lett.,32, 239–241 (1978).

    Google Scholar 

  130. S. P. Bazhulin, N. G. Basov, V. S. Zuev, et al., Kvantovaya Elektron. (Moscow),5, 684–686 (1978).

    Google Scholar 

  131. Tachisto Inc., 13 Highland Circle, Needman, Mass., 02194.

  132. N. G. Basov, O. V. Bogdankevich, V. A. Danilychev, et al., Kratk. Soobshch. Fiz., No. 7, 68–71 (1970).

    Google Scholar 

  133. N. G. Basov, V. A. Danilychev, Yu. M. Popov, and D. D. Khodkevich, Pis'ma Zh. Eksp. Teor. Fiz.,12, 473–474 (1970).

    Google Scholar 

  134. R. W. Dreyfus and S. C. Wallace, Opt. Commun.,13, 218–221 (1975).

    Google Scholar 

  135. L.I. Gudzenko, I. S. Lakoba, and G. Yu. Petrushchenko, et al., J. Sov. Laser Res.,3, No. 3 (1982).

  136. N. G. Basov, V. A. Danilychev, V. A. Dolgikh, et al., Pis'ma Zh. Eksp. Teor. Fiz.,26, 20–23 (1977).

    Google Scholar 

  137. L. I. Gudzenko, V. I. Derzhiev, and S. I. Yakovlenko, J. Sov. Laser Res.,3, No. 3 (1982).

  138. M. R. Flannery and T. P. Yang, Appl. Phys. Lett.,32, 327–330 (1978).

    Google Scholar 

  139. M. R. Flannery, Chem. Phys. Lett.,56, 143–147 (1978).

    Google Scholar 

  140. V. A. Aleksandrov, V. Yu. Vinogradov, V. V. Lugovskii, and I. V. Podmoshenskii, Opt. Spektrosk.,41, 390–396 (1976).

    Google Scholar 

  141. D. R. Hershbach, Adv. Chem. Phys.,10, 319–393 (1966).

    Google Scholar 

  142. E. E. Nikitin, Theory of Elementary Atomic-Molecular Processes in Gases [in Russian], Khimiya, Moscow (1970).

    Google Scholar 

  143. J. E. Velazco, J. H. Kolts, and D. W. Setser, J. Chem. Phys.,65, 3468–3480 (1976).

    Google Scholar 

  144. H. C. Brashears, D. W. Setser, and D. Desmarteau, Chem. Phys. Lett.,48, 84–88 (1977).

    Google Scholar 

  145. M. Rokni, J. H. Jacob, J. A. Mangano, and R. Brochu, Appl. Phys. Lett.,32, 223–225 (1978).

    Google Scholar 

  146. J. H. Jacob, M. Rokni, J. A. Mangano, and R. Brochu, Appl. Phys. Lett.,32, 109–111 (1978).

    Google Scholar 

  147. G. P. Quigley and W. H. Hughes, Appl. Phys. Lett.,32, 627–629 (1978).

    Google Scholar 

  148. M. Rokni, J. H. Jacob, J. A. Mangano, and R. Brochu, Appl. Phys. Lett.,30, 458–461 (1977).

    Google Scholar 

  149. E. V. George and C. K. Rhodes, Appl. Phys. Lett.,23, 139–141 (1973).

    Google Scholar 

  150. L. I. Gudzenko and S. I. Yakovlenko, Dokl. Akad. Nauk SSSR,207, 1085–1087 (1972).

    Google Scholar 

  151. M. M. Mkrtchyan and V. T. Platonenko, Pis'ma Zh. Eksp. Teor. Fiz.,17, 28–31 (1973).

    Google Scholar 

  152. A. G. Molchanov and Yu. M. Popov, Kvantovaya Elektron. (Moscow),1, 1122–1127 (1974).

    Google Scholar 

  153. M. M. Mkrtchyan and V. T. Platonenko, Kvantovaya Elektron. (Moscow),3, 2562–2569 (1976).

    Google Scholar 

  154. J. G. Eden and S. K. Searles, Appl. Phys. Lett.,29, 356–358 (1976).

    Google Scholar 

  155. L. I. Gudzenko and I. S. Lakoba, Kratk. Soobshch. Fiz., No. 6, 3–5 (1975).

    Google Scholar 

  156. A. A. Belyaeva, R. B. Dushin, E. V. Nikiforov, et al., Dokl. Akad. Nauk SSSR,198, 1117–1120 (1971).

    Google Scholar 

  157. A. A. Belyaeva, R. B. Dushin, Yu. B. Predtechenskii, and L. D. Shcherba, Dokl. Akad. Nauk SSSR,199, 628–631 (1971).

    Google Scholar 

  158. A. C. Tam, G. Moe, B. R. Bulos, and W. Happer, Opt. Commun.,16, 376–380 (1976).

    Google Scholar 

  159. J. G. Eden, B. E. Cherrington, and J. T. Verdeyen, IEEE J. Quantum Electron.,QE-12, 698–704 (1976).

    Google Scholar 

  160. W. R. Bennett, Appl. Phys. Lett.,31, 667–669 (1977).

    Google Scholar 

  161. G. R. Fournier and M. W. McGeoch, Opt. Commun.,18, 121 (1976).

    Google Scholar 

  162. D. L. Drummond and L. A. Schlie, J. Chem. Phys.,65, 3454–3460 (1976).

    Google Scholar 

  163. J. R. Woodworth, Bull. Am. Phys. Soc.,21, 155 (1976).

    Google Scholar 

  164. L. K. Lam, A. Gallagher, and R. Drullinger, J. Chem. Phys.,68, 4411–4416 (1978).

    Google Scholar 

  165. D. J. Benard, P. J. Love, and W. D. Slafer, Chem. Phys. Lett.,48, 321–324 (1977).

    Google Scholar 

  166. J. Gray and R. H. Tomlinson, Chem. Phys. Lett.,4, 251–254 (1969).

    Google Scholar 

  167. Yu. N. Belyaev, N. V. Kamyshov, and V. B. Leonas, Khim. Vys. Energ.,4, 260–262 (1970).

    Google Scholar 

  168. V. B. Leonas, Usp. Fiz. Nauk,107, 29–56 (1972).

    Google Scholar 

  169. L. A. Vainshtein, I. I. Sobel'man, and E. A. Yukov, Cross Sections for Excitation of Atoms and Ions by Electrons [in Russian], Nauka, Moscow (1973).

    Google Scholar 

  170. L. I. Gudzenko, L. A. Kulevskii, I. S. Lakoba, and A. A. Medvedev, Kratk. Soobshch. Fiz., No. 1, 21–24 (1976).

    Google Scholar 

  171. L. I. Gudzenko, D. M. Kuznetsova, I. S. Lakoba, et al., in: Second All-Union Seminar on Physical Processes in Gas Lasers, Abstracts of Papers, Uzhgorod (1978), pp. 109–111.

  172. J. K. Rice, Bull. Am. Phys. Soc.,21, 155 (1976).

    Google Scholar 

  173. L. V. Gurvich, G. V. Karachevtsev, V. N. Kondrat'ev, et al., Chemical-Bond Rupture Energy. Ionization Potentials and Electron Affinity [in Russian], Nauka, Moscow (1974).

    Google Scholar 

  174. L. I. Gudzenko, L. V. Gurvich, V. S. Dubov, and S. I. Yakovlenko, Zh. Eksp. Teor. Fiz.,73, 2067–2076 (1977).

    Google Scholar 

  175. V. S. Dubov, L. I. Gudzenko, L. V. Gurvitch, and S. I. Yakovlenko, Chem. Phys. Lett.,53, 170–173 (1978).

    Google Scholar 

Download references

Authors

Additional information

Translated from Trudy Ordena Lenina Fizicheskogo Instituta im. P. N. Lebedeva, Vol. 120, pp. 8–30, 1980.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Gudzenko, L.I., Lakoba, I.S. & Yakovlenko, S.I. Exciplex lasers. J Russ Laser Res 3, 181–200 (1982). https://doi.org/10.1007/BF01134143

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01134143

Keywords

Navigation