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Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi

Year 2013, Volume: 28 Issue: 4, 0 - , 05.03.2014

Abstract

Çalışmada, türbülanslı ortamda yayılan super Lorentz-Gauss laser demetlerinin yatay iletim uzaklıklarındaki BER - SNR değişimi hesaplandı. BER hesaplamalarında kullanılan pırıldama indisleri, genişletilmiş Huygens-Fresnel prensibi ile elde edilmiştir. Matlab kullanılarak BER – SNR değerinin bağlantı uzaklığına ve laser kaynak boyutuna bağımlılığı gösterildi. Kısa iletim mesafesinde super Lorentz-Gauss laser demetinin ticari olarak kullanılan Gauss laser demetine göre daha iyi bağlantı performansı sağladığı sonucuna varıldı.

References

  • Majumdar, A. K., Ricklin, J. C., Free-Space Laser Communications Principles and Advances, Optics & Lasers, New York, A.B.D., 2008.
  • Andrews, L.C., Phillips, R.L., Laser Beam Propagation Through Random Media, PM 152, SPIE, Washington, A.B.D. 2005.
  • Eyyuboglu, H.T., Baykal, Y.K., Cai, Y., “Scintillation calculations for partially coherent general beams via extended Huygens–Fresnel integral and self-designed Matlab function”, Applied Physics B Lasers and Optics, Cilt 100, No 3, 597-609, 2009.
  • Eyyuboglu, H.T., “Partially coherent Lorentz-Gaussian Beam and its scintillation”, Applied Physics B Lasers and Optics, Cilt 103, No 3, 755-762, 2011.
  • Gerçekcioğlu, H., Baykal, Y.K., “Annular beam scintillations in non-Kolmogorov weak turbulance”, Applied Physics B Lasers and Optics, Cilt 106, No 4, 933-937, 2012.
  • Gawhary, O.,Severini S., “Lorentz beams and symmetry properties in paraxial optics”, J.Opt. A:Pure and Applied Optics, Cilt 8, No 5, 409-414, 2006.
  • Gawhary, O.,Severini S., “Lorentz beams as a basis for a new class of rectangularly symmetric optical fields”, Optics Communications, Cilt 269, No 2, 274-284, 2007.
  • Zhou, G., “Average intensity and spreading of a super Lorentz-Gauss modes in a turbulent atmosphere”, Applied Physics B Lasers and Optics, Cilt 101, No 1-2, 371-379, 2010.
  • Zhou, G., “Super Lorentz-Gauss modes and their paraxial propagation properties”, Journal of the Optical Society of America A Optics Image Science and Vision, Cilt 27, No 3, 563-571, 2010.
  • Gökçe, M.C., Eyyuboglu, H.T., “Irradiance fluctuation of partially coherent super Lorentz – Gaussian beams”, Optics Communications, Cilt 284, No 20, 4857 – 4861, 2011.
  • Gökçe, M.C., Optiksel Telsiz İçin Yüksek Dereceli Lorentz-Gauss Laser demetlerinin Pırıldama Analizi ve Değerlendirilmesi, Master Tezi, Ankara Üniversitesi, Fen Bilimleri Enstitüsü, 2012.
  • Tayson, R.K., Canning, D.E., “Indirect measurement of a laser communications bit-error-rate reduction with low-order adaptive optics”, Applied Optics, Cilt 42, No 21, 4239-4243, 2003.
  • Ricklin, J.C., Davidson, F.M., “Atmospheric optical communication with a Gaussian Schell beam”, Journal of the Optical Society of America A Optics Image Science and Vision, Cilt 20, No 5, 856-866, 2003.
  • Majumdar, A.K., “ Free-space laser communication performance in the atmospheric channel”, Journal of Optical Fiber Communication, Cilt 2, No 4, 345-396, 2005.
  • Arpali, S.A., Eyyuboglu, H.T., Baykal Y., “Bit error rates for general beams”, Applied Optics, Cilt 47, No 32, 5971-5975, 2008.
  • Arpali, S.A., Baykal, Y., “Bit Error Rates for Focused General-type beams”, Progress in Electromagnetics Research Symposium (PIERS), Moscow, 1600-1603, 12-21 Ağustos, 2009.
Year 2013, Volume: 28 Issue: 4, 0 - , 05.03.2014

Abstract

References

  • Majumdar, A. K., Ricklin, J. C., Free-Space Laser Communications Principles and Advances, Optics & Lasers, New York, A.B.D., 2008.
  • Andrews, L.C., Phillips, R.L., Laser Beam Propagation Through Random Media, PM 152, SPIE, Washington, A.B.D. 2005.
  • Eyyuboglu, H.T., Baykal, Y.K., Cai, Y., “Scintillation calculations for partially coherent general beams via extended Huygens–Fresnel integral and self-designed Matlab function”, Applied Physics B Lasers and Optics, Cilt 100, No 3, 597-609, 2009.
  • Eyyuboglu, H.T., “Partially coherent Lorentz-Gaussian Beam and its scintillation”, Applied Physics B Lasers and Optics, Cilt 103, No 3, 755-762, 2011.
  • Gerçekcioğlu, H., Baykal, Y.K., “Annular beam scintillations in non-Kolmogorov weak turbulance”, Applied Physics B Lasers and Optics, Cilt 106, No 4, 933-937, 2012.
  • Gawhary, O.,Severini S., “Lorentz beams and symmetry properties in paraxial optics”, J.Opt. A:Pure and Applied Optics, Cilt 8, No 5, 409-414, 2006.
  • Gawhary, O.,Severini S., “Lorentz beams as a basis for a new class of rectangularly symmetric optical fields”, Optics Communications, Cilt 269, No 2, 274-284, 2007.
  • Zhou, G., “Average intensity and spreading of a super Lorentz-Gauss modes in a turbulent atmosphere”, Applied Physics B Lasers and Optics, Cilt 101, No 1-2, 371-379, 2010.
  • Zhou, G., “Super Lorentz-Gauss modes and their paraxial propagation properties”, Journal of the Optical Society of America A Optics Image Science and Vision, Cilt 27, No 3, 563-571, 2010.
  • Gökçe, M.C., Eyyuboglu, H.T., “Irradiance fluctuation of partially coherent super Lorentz – Gaussian beams”, Optics Communications, Cilt 284, No 20, 4857 – 4861, 2011.
  • Gökçe, M.C., Optiksel Telsiz İçin Yüksek Dereceli Lorentz-Gauss Laser demetlerinin Pırıldama Analizi ve Değerlendirilmesi, Master Tezi, Ankara Üniversitesi, Fen Bilimleri Enstitüsü, 2012.
  • Tayson, R.K., Canning, D.E., “Indirect measurement of a laser communications bit-error-rate reduction with low-order adaptive optics”, Applied Optics, Cilt 42, No 21, 4239-4243, 2003.
  • Ricklin, J.C., Davidson, F.M., “Atmospheric optical communication with a Gaussian Schell beam”, Journal of the Optical Society of America A Optics Image Science and Vision, Cilt 20, No 5, 856-866, 2003.
  • Majumdar, A.K., “ Free-space laser communication performance in the atmospheric channel”, Journal of Optical Fiber Communication, Cilt 2, No 4, 345-396, 2005.
  • Arpali, S.A., Eyyuboglu, H.T., Baykal Y., “Bit error rates for general beams”, Applied Optics, Cilt 47, No 32, 5971-5975, 2008.
  • Arpali, S.A., Baykal, Y., “Bit Error Rates for Focused General-type beams”, Progress in Electromagnetics Research Symposium (PIERS), Moscow, 1600-1603, 12-21 Ağustos, 2009.
There are 16 citations in total.

Details

Primary Language Turkish
Journal Section Makaleler
Authors

Muhsin C. Gökçe This is me

Filiz Sarı This is me

Faruk Özek This is me

Publication Date March 5, 2014
Submission Date March 5, 2014
Published in Issue Year 2013 Volume: 28 Issue: 4

Cite

APA Gökçe, M. C., Sarı, F., & Özek, F. (2014). Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 28(4).
AMA Gökçe MC, Sarı F, Özek F. Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi. GUMMFD. March 2014;28(4).
Chicago Gökçe, Muhsin C., Filiz Sarı, and Faruk Özek. “Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 28, no. 4 (March 2014).
EndNote Gökçe MC, Sarı F, Özek F (March 1, 2014) Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 28 4
IEEE M. C. Gökçe, F. Sarı, and F. Özek, “Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi”, GUMMFD, vol. 28, no. 4, 2014.
ISNAD Gökçe, Muhsin C. et al. “Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 28/4 (March 2014).
JAMA Gökçe MC, Sarı F, Özek F. Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi. GUMMFD. 2014;28.
MLA Gökçe, Muhsin C. et al. “Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, vol. 28, no. 4, 2014.
Vancouver Gökçe MC, Sarı F, Özek F. Türbülanslı Ortamda Yayılan Super Lorentz-Gauss Laser Demetleri İçin Ber Analizi. GUMMFD. 2014;28(4).