Abstract

Raman conversion from 1.06 to 1.7 μm with a photon efficiency of 44% has been demonstrated in HD at 77 K.

© 1990 Optical Society of America

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References

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  1. H. Komine, “Stimulated Vibrational Raman Scattering in HD,” IEEE J. Quantum Electron. QE-22, 520–521 (1986).
    [CrossRef]
  2. Y. Shimoji, N. Djeu, “Overtone Pumped Superfluorescent HCl Laser Frequency Converter,” Appl. Phys. Lett. 49, 1–3 (1986).
    [CrossRef]
  3. B. P. Stoicheff, “High Resolution Raman Spectroscopy of Gases IX. Spectra of H2, HD, and D2,” Can. J. Phys. 35, 730–741 (1957).
    [CrossRef]
  4. T. Witkowicz, A. D. May, “Collisional Effects in Compressed HD,” Can. J. Phys. 54, 575–583 (1976).
    [CrossRef]
  5. G. Herzberg, Spectra of Diatomic Molecules (Van Nostrand, Princeton, 1967), p. 124.
  6. P. Lallemand, “The Stimulated Raman Effect,” in The Raman Effect, Vol. 1, A. Anderson, Ed. (Dekker, New York, 1971), pp. 287–342.
  7. W. K. Bischel, G. Black, “Wavelength Dependence of Raman Scattering Cross Sections from 200–600 nm,” in Excimer Lasers—1983, C. K. Rhodes, H. Egger, H. Pummer, Eds. (AIP, New York, 1983), pp. 181–187.

1986

H. Komine, “Stimulated Vibrational Raman Scattering in HD,” IEEE J. Quantum Electron. QE-22, 520–521 (1986).
[CrossRef]

Y. Shimoji, N. Djeu, “Overtone Pumped Superfluorescent HCl Laser Frequency Converter,” Appl. Phys. Lett. 49, 1–3 (1986).
[CrossRef]

1976

T. Witkowicz, A. D. May, “Collisional Effects in Compressed HD,” Can. J. Phys. 54, 575–583 (1976).
[CrossRef]

1957

B. P. Stoicheff, “High Resolution Raman Spectroscopy of Gases IX. Spectra of H2, HD, and D2,” Can. J. Phys. 35, 730–741 (1957).
[CrossRef]

Bischel, W. K.

W. K. Bischel, G. Black, “Wavelength Dependence of Raman Scattering Cross Sections from 200–600 nm,” in Excimer Lasers—1983, C. K. Rhodes, H. Egger, H. Pummer, Eds. (AIP, New York, 1983), pp. 181–187.

Black, G.

W. K. Bischel, G. Black, “Wavelength Dependence of Raman Scattering Cross Sections from 200–600 nm,” in Excimer Lasers—1983, C. K. Rhodes, H. Egger, H. Pummer, Eds. (AIP, New York, 1983), pp. 181–187.

Djeu, N.

Y. Shimoji, N. Djeu, “Overtone Pumped Superfluorescent HCl Laser Frequency Converter,” Appl. Phys. Lett. 49, 1–3 (1986).
[CrossRef]

Herzberg, G.

G. Herzberg, Spectra of Diatomic Molecules (Van Nostrand, Princeton, 1967), p. 124.

Komine, H.

H. Komine, “Stimulated Vibrational Raman Scattering in HD,” IEEE J. Quantum Electron. QE-22, 520–521 (1986).
[CrossRef]

Lallemand, P.

P. Lallemand, “The Stimulated Raman Effect,” in The Raman Effect, Vol. 1, A. Anderson, Ed. (Dekker, New York, 1971), pp. 287–342.

May, A. D.

T. Witkowicz, A. D. May, “Collisional Effects in Compressed HD,” Can. J. Phys. 54, 575–583 (1976).
[CrossRef]

Shimoji, Y.

Y. Shimoji, N. Djeu, “Overtone Pumped Superfluorescent HCl Laser Frequency Converter,” Appl. Phys. Lett. 49, 1–3 (1986).
[CrossRef]

Stoicheff, B. P.

B. P. Stoicheff, “High Resolution Raman Spectroscopy of Gases IX. Spectra of H2, HD, and D2,” Can. J. Phys. 35, 730–741 (1957).
[CrossRef]

Witkowicz, T.

T. Witkowicz, A. D. May, “Collisional Effects in Compressed HD,” Can. J. Phys. 54, 575–583 (1976).
[CrossRef]

Appl. Phys. Lett.

Y. Shimoji, N. Djeu, “Overtone Pumped Superfluorescent HCl Laser Frequency Converter,” Appl. Phys. Lett. 49, 1–3 (1986).
[CrossRef]

Can. J. Phys.

B. P. Stoicheff, “High Resolution Raman Spectroscopy of Gases IX. Spectra of H2, HD, and D2,” Can. J. Phys. 35, 730–741 (1957).
[CrossRef]

T. Witkowicz, A. D. May, “Collisional Effects in Compressed HD,” Can. J. Phys. 54, 575–583 (1976).
[CrossRef]

IEEE J. Quantum Electron.

H. Komine, “Stimulated Vibrational Raman Scattering in HD,” IEEE J. Quantum Electron. QE-22, 520–521 (1986).
[CrossRef]

Other

G. Herzberg, Spectra of Diatomic Molecules (Van Nostrand, Princeton, 1967), p. 124.

P. Lallemand, “The Stimulated Raman Effect,” in The Raman Effect, Vol. 1, A. Anderson, Ed. (Dekker, New York, 1971), pp. 287–342.

W. K. Bischel, G. Black, “Wavelength Dependence of Raman Scattering Cross Sections from 200–600 nm,” in Excimer Lasers—1983, C. K. Rhodes, H. Egger, H. Pummer, Eds. (AIP, New York, 1983), pp. 181–187.

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g = 2 c 2 N h ν s 2 ν L π Δ ν d σ d Ω ,

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