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On the population of the metastable states behind unstable shock waves in ionizing argon

Published online by Cambridge University Press:  21 April 2006

A. F. P. Houwing
Affiliation:
Department of Physics and Theoretical Physics, Australian National University, Canberra, Australia
T. J. Mcintyre
Affiliation:
Department of Physics and Theoretical Physics, Australian National University, Canberra, Australia
P. A. Taloni
Affiliation:
Department of Physics and Theoretical Physics, Australian National University, Canberra, Australia
R. J. Sandeman
Affiliation:
Department of Physics and Theoretical Physics, Australian National University, Canberra, Australia

Abstract

Experiments are described in which the populations of metastable levels in ionizing argon are measured through spatially resolved hook interferometry. The results are compared with the present model for shock-induced ionization and a recently proposed mechanism to explain observed flow instabilities. It is found that the experimental measurements support the presently accepted model, which states that electron–atom collisions play the dominant role in the excitation process, but contradicts recent proposals which predict a rapid build-up of anomalously high metastable populations through atom–atom collisions.

Type
Research Article
Copyright
© 1986 Cambridge University Press

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References

Baryshnikov, A. S. & Skvortsov G. E.1979 Zh. tekh. Fiz. 49, 23832485.
Bates D. R., Kingston, A. E. & McWhirter R. W. P.1962 Proc. R. Soc. Lond. A 267, 297312.
Bond J. W.1957 Phys. Rev. 105 (6), 1683.
Bristow, M. P. F. & Glass I. I.1972 Phys. Fluids 15, 2066.
Brown, E. A. & Mullaney J.1964 Am. Phys. Soc., Div. Fluid Dyn. Meeting, California.
Byron S., Stabler, R. C. & Bortz P. I.1962 Phys. Rev. Lett. 8, 376379.
Demmig F.1977 Proc. 11th Intl Shock Tube Symp., Seattle.
Demmig F.1983 Proc. 14th Intl Symp. Shock Tubes and Waves, Sydney.
D'Yakov S. P.1954 Zh. eksp. teor. Fiz. 27, 288295.
Erpenbeck J. J.1963 Ninth Symposium (International) on Combustion, pp. 442453. Academic.
Erpenbeck J. J.1969 Twelfth Symposium (International) on Combustion, pp. 711721. Pittsburgh: The Combustion Institute.
Fickett, W. & Davis W. C.1979 Detonation. University of California Press.
Freeman N. C.1955 Proc. R. Soc. Lond. A 228, 341362.
Freeman N. C.1957 J. Fluid Mech. 2, 397.
Glass, I. I. & Liu W. S.1978 J. Fluid Mech. 84 (1), 5577.
Glass, I. I. & Patterson G. N.1955 J. Aero. Sci. 22 (2), 73100.
Griffiths R. W., Sandeman, R. J. & Hornung H. G.1976 J. Phys. D: Appl. Phys. 8, 1681.
Harwell, K. E. & Jahn R. G.1964 Phys. Fluids 7 (2), 214.
Kelly A. J.1966 J. Chem. Phys. 45 (5), 1723.
Lapworth K. C.1959 J. Fluid Mech. 6, 469.
Mclaren, T. I. & Hobson R. M.1968 Phys. Fluids 11 (10), 2162.
Marlow W. C.1967 Appl. Optics 6, 1715.
Meissner K. W.1926 Z. Phys. 39, 172.
Meissner, K. W. & Graffunder W.1927 Annln. Phys. 84, 1009.
Meyer-PrÜssner R.1983 Dissertation, Universität Hannover.
Mishin G. I., Bedin A. A. P., Yushchenkova N. I., Skvortsov, G. E. & Ryazin A. P.1981 Zh. tekh. Fiz. 51, 23152324.
von Moorheim, W. K. & George, A. R. 1975 J. Fluid Mech. 68, 97108.
Morgan E. J.1964 Am. Phys. Soc. Div. Fluid Dyn. Meeting, California.
Oettinger, P. E. & Bershader D.1967 AIAA J. 5 (9), 16251632.
Petschek, H. & Byron S.1957 Ann. Phys. 1 (3), 270.
Phelps, A. V. & Molner J. P.1953 Phys. Rev. 89 (6), 12021208.
Pierce, B. M. & Birge R. R.1982 IEEE J. Quantum. Electron. QE-18 (7), 1164.
Sandeman R. J.1979 Appl. Optics 18, 3873.
Sandeman, R. J. & Allen G. H.1971 Proc. 8th Int. Shock Tube Symp. Chapman & Hall.
Sandeman, R. J. & Ebrahim N. A.1977 Appl. Optics 16, 1376.
Weise W. L., Smith, M. W. & Miles B. M.1969 Atomic Transition Probabilities, Nat. Bur. Stand. (US) 22, 193.
Weymann H. D.1958 Inst. Fluid Dyn. Appl. Math. Univ. of Maryland. TX no. BN-144.
Whitham G. B.1956 J. Fluid Mech. 2, 145171.
Wong, H. & Bershader D.1966 J. Fluid Mech. 26 (3), 459.
Yushchenkova N. I.1980 Pis'ma Zh. Tekh. Fiz. 6, 1283.