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Kvantovaya Elektronika, 2005, Volume 35, Number 5, Pages 415–418 (Mi qe3405)  

This article is cited in 13 scientific papers (total in 13 papers)

Nonlinear optical phenomena

Measurement of the two-photon absorption cross sections of dicyanomethylene-pyrans by the z-scan method

S. S. Chunosovaa, V. A. Svetlichnyib, Yu. P. Meshalkincd

a Institute of Laser Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk
b V.D. Kuznetsov Siberian Physicotechnical Institute at Tomsk State University
c Novosibirsk State Technical University
d Research Institute of Physiology, Russian Academy of Medical Sciences, Siberian Branch, Novosibirsk

Abstract: The two-photon absorption cross sections of three dicyanomethylene-pyrane DCM dyes excited by a femtosecond pulsed from a Ti:sapphire laser are measured by the open-aperture z-scan method. The experimental transmission curves are approximated by the corresponding model curves to give the two-photon absorption cross sections equal to 5.1 $\times10^3$ GM, 5.7 $\times10^3$ GM, and 8.4 $\times10^3$ GM for DCM, DCM-17, and DCM-doa, respectively (1 GM $=10^{-50}$ cm$^4$s phot$^{-1}$ mol$^{-1}$).

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English version:
Quantum Electronics, 2005, 35:5, 415–418

Bibliographic databases:

PACS: 42.65.An, 33.80.-b
Received: 18.01.2005

Citation: S. S. Chunosova, V. A. Svetlichnyi, Yu. P. Meshalkin, “Measurement of the two-photon absorption cross sections of dicyanomethylene-pyrans by the z-scan method”, Kvantovaya Elektronika, 35:5 (2005), 415–418 [Quantum Electron., 35:5 (2005), 415–418]

Citation in format AMSBIB
\by S.~S.~Chunosova, V.~A.~Svetlichnyi, Yu.~P.~Meshalkin
\paper Measurement of the two-photon absorption cross sections of dicyanomethylene-pyrans by the z-scan method
\jour Kvantovaya Elektronika
\yr 2005
\vol 35
\issue 5
\pages 415--418
\jour Quantum Electron.
\yr 2005
\vol 35
\issue 5
\pages 415--418

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    This publication is cited in the following articles:
    1. Yu. P. Meshalkin, V. A. Svetlichnyi, S. S. Chunosova, T. N. Kopylova, Russ Phys J, 48:11 (2005), 1182  crossref  elib  scopus
    2. V. A. Svetlichnyǐ, Yu. P. Meshalkin, Opt Spectrosc, 102:6 (2007), 872  crossref  adsnasa  isi  scopus
    3. Yuanqin Xia, Yugang Jiang, Rongwei Fan, Zhiwei Dong, Weijiang Zhao, Deying Chen, G. Umesh, Optics & Laser Technology, 41:6 (2009), 700  crossref  isi  scopus
    4. A V Kulinich, Aleksandr A Ishchenko, RUSS CHEM REV, 78:2 (2009), 141  mathnet  crossref  mathscinet  adsnasa  isi  elib  scopus
    5. A. Yu. Gerasimenko, V. M. Podgaetsky, V. I. Krasovsky, A. P. Lugovsky, Opt Mem Neural Networks, 18:3 (2009), 218  crossref  elib  scopus
    6. A. Yu. Gerasimenko, V. M. Podgaetskii, V. I. Krasovskii, A. P. Lugovskii, Bull Lebedev Phys Inst, 36:10 (2009), 287  crossref  adsnasa  isi  elib  scopus
    7. R. Sreeja, Jobina John, P.M. Aneesh, M.K. Jayaraj, Optics Communications, 283:14 (2010), 2908  crossref  adsnasa  isi  elib  scopus
    8. V. A. Svetlichnyi, Yu. P. Meshalkin, A. V. Kirpichnikov, E. V. Pestryakov, Russ Phys J, 2010  crossref  elib  scopus
    9. Quantum Electron., 40:1 (2010), 45–50  mathnet  crossref  adsnasa  isi  elib
    10. D Mohan, R Dhar, Laser Phys, 23:12 (2013), 125401  crossref  isi  elib  scopus
    11. V. A. Svetlichnyi, Russ Phys J, 2014  crossref  isi  scopus
    12. S. A. Tereshchenko, V. M. Podgaetskii, A. Yu. Gerasimenko, M. S. Savel’ev, Opt. Spectrosc, 116:3 (2014), 454  crossref  adsnasa  isi  elib  scopus
    13. Devendra Mohan, J. Nonlinear Optic. Phys. Mat, 23:02 (2014), 1450018  crossref  isi  scopus
  • Квантовая электроника Quantum Electronics
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