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References

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  1. J. P. Lallemand, R. Desailly, C. Froelhy, Acta Astron. 4, 343 (1977).
    [Crossref]
  2. T. Dudderar, P. Simpkins, Nature London 270, 45 (1977).
    [Crossref]
  3. R. Grousson, S. Mallick, Appl. Opt. 17, 2334 (1977).
    [Crossref]
  4. D. Barker, M. Fourney, Opt. Lett. 1, 135 (1977).
    [Crossref] [PubMed]
  5. K. Iwata, T. Hakoshima, R. Nagata, Opt. Commun. 25, 311 (1978).
    [Crossref]
  6. P. Simpkins, T. Dudderar, J.Fluid Mech. 89, 665 (1978).
    [Crossref]
  7. F. P. Chiang, A. Asundi, Appl. Opt. 18, 409 (1979).
    [Crossref] [PubMed]
  8. S. Chandrasekhar, Hydrodynamic and Hydromagnetic Stability (Clarendon, Oxford, 1961).

1979 (1)

1978 (2)

K. Iwata, T. Hakoshima, R. Nagata, Opt. Commun. 25, 311 (1978).
[Crossref]

P. Simpkins, T. Dudderar, J.Fluid Mech. 89, 665 (1978).
[Crossref]

1977 (4)

J. P. Lallemand, R. Desailly, C. Froelhy, Acta Astron. 4, 343 (1977).
[Crossref]

T. Dudderar, P. Simpkins, Nature London 270, 45 (1977).
[Crossref]

R. Grousson, S. Mallick, Appl. Opt. 17, 2334 (1977).
[Crossref]

D. Barker, M. Fourney, Opt. Lett. 1, 135 (1977).
[Crossref] [PubMed]

Asundi, A.

Barker, D.

Chandrasekhar, S.

S. Chandrasekhar, Hydrodynamic and Hydromagnetic Stability (Clarendon, Oxford, 1961).

Chiang, F. P.

Desailly, R.

J. P. Lallemand, R. Desailly, C. Froelhy, Acta Astron. 4, 343 (1977).
[Crossref]

Dudderar, T.

P. Simpkins, T. Dudderar, J.Fluid Mech. 89, 665 (1978).
[Crossref]

T. Dudderar, P. Simpkins, Nature London 270, 45 (1977).
[Crossref]

Fourney, M.

Froelhy, C.

J. P. Lallemand, R. Desailly, C. Froelhy, Acta Astron. 4, 343 (1977).
[Crossref]

Grousson, R.

R. Grousson, S. Mallick, Appl. Opt. 17, 2334 (1977).
[Crossref]

Hakoshima, T.

K. Iwata, T. Hakoshima, R. Nagata, Opt. Commun. 25, 311 (1978).
[Crossref]

Iwata, K.

K. Iwata, T. Hakoshima, R. Nagata, Opt. Commun. 25, 311 (1978).
[Crossref]

Lallemand, J. P.

J. P. Lallemand, R. Desailly, C. Froelhy, Acta Astron. 4, 343 (1977).
[Crossref]

Mallick, S.

R. Grousson, S. Mallick, Appl. Opt. 17, 2334 (1977).
[Crossref]

Nagata, R.

K. Iwata, T. Hakoshima, R. Nagata, Opt. Commun. 25, 311 (1978).
[Crossref]

Simpkins, P.

P. Simpkins, T. Dudderar, J.Fluid Mech. 89, 665 (1978).
[Crossref]

T. Dudderar, P. Simpkins, Nature London 270, 45 (1977).
[Crossref]

Acta Astron. (1)

J. P. Lallemand, R. Desailly, C. Froelhy, Acta Astron. 4, 343 (1977).
[Crossref]

Appl. Opt. (2)

R. Grousson, S. Mallick, Appl. Opt. 17, 2334 (1977).
[Crossref]

F. P. Chiang, A. Asundi, Appl. Opt. 18, 409 (1979).
[Crossref] [PubMed]

J.Fluid Mech. (1)

P. Simpkins, T. Dudderar, J.Fluid Mech. 89, 665 (1978).
[Crossref]

Nature London (1)

T. Dudderar, P. Simpkins, Nature London 270, 45 (1977).
[Crossref]

Opt. Commun. (1)

K. Iwata, T. Hakoshima, R. Nagata, Opt. Commun. 25, 311 (1978).
[Crossref]

Opt. Lett. (1)

Other (1)

S. Chandrasekhar, Hydrodynamic and Hydromagnetic Stability (Clarendon, Oxford, 1961).

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Figures (4)

Fig. 1
Fig. 1

Multiple-exposure photograph of one roll of stationary convection.

Fig. 2
Fig. 2

Velocity component υx measured between A and B. The crosses are the experimental points, and the continuous curve is a sinusoid fitted between these points.

Fig. 3
Fig. 3

Spatial filtering setup. P, photograph; L1 and L2, Fourier transform lenses; F, spatial filter.

Fig. 4
Fig. 4

Filtered images with equal velocity fringes, (a) υx = 0; Δυy = 32 μm/sec. (b) Δυx = 19.5 μm/sec; υy = 0.

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