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Optics Letters

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  • Vol. 24, Iss. 16 — Aug. 15, 1999
  • pp: 1175–1177

Autocorrelation measurement of femtosecond laser pulses by use of a ZnSe two-photon detector array

A. Gutierrez, P. Dorn, J. Zeller, D. King, L. F. Lester, W. Rudolph, and M. Sheik-Bahae  »View Author Affiliations


Optics Letters, Vol. 24, Issue 16, pp. 1175-1177 (1999)
http://dx.doi.org/10.1364/OL.24.001175


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Abstract

We demonstrate autocorrelation measurements of 85-fs Ti:sapphire laser pulses, using a 32-pixel ZnSe detector array in a single-shot geometry. The two-photon photoconductor is fabricated by deposition of an array of interdigitated gold fingers on a single-crystal ZnSe substrate.

© 1999 Optical Society of America

OCIS Codes
(040.5150) Detectors : Photoconductivity
(180.5810) Microscopy : Scanning microscopy
(190.1900) Nonlinear optics : Diagnostic applications of nonlinear optics
(320.7110) Ultrafast optics : Ultrafast nonlinear optics
(320.7130) Ultrafast optics : Ultrafast processes in condensed matter, including semiconductors

Citation
A. Gutierrez, P. Dorn, J. Zeller, D. King, L. F. Lester, W. Rudolph, and M. Sheik-Bahae, "Autocorrelation measurement of femtosecond laser pulses by use of a ZnSe two-photon detector array," Opt. Lett. 24, 1175-1177 (1999)
http://www.opticsinfobase.org/ol/abstract.cfm?URI=ol-24-16-1175


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References

  1. W. Rudolph, M. Sheik-Bahae, A. Bernstein, and L. F. Lester, Opt. Lett. 22, 313 (1997).
  2. D. T. Reid, M. Padgett, C. McGowan, W. E. Sleat, and W. Sibbett, Opt. Lett. 22, 233 (1997).
  3. J. K. Ranka, A. L. Gaeta, A. Baltuska, M. S. Pshenichnikov, and D. A. Wiersma, Opt. Lett. 22, 1344 (1997).
  4. P. Dorn, J. Jasapara, J. Zeller, W. Rudolph, and M. Sheik-Bahae, in Ultrafast Phenomena XI, T. Elsaesser, J. G. Fujimoto, D. A. Wiersma, and W. Zinth, eds., Vol. 63 of Springer Series in Chemical Physics (Springer, New York, 1998), pp. 165–167.
  5. J.-C. Diels and W. Rudolph, Ultrashort Laser Pulse Phenomena: Fundamentals, Techniques, and Applications on a Femtosecond Time Scale (Academic, San Diego, Calif., 1996).
  6. Y. Takagi, T. Kobayashi, K. Yoshihara, and S. Imamura, Opt. Lett. 17, 658 (1992).
  7. S. M. Sze, Physics of Semiconductor Devices, 2nd ed. (Wiley, New York, 1981).

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