All-chirped-mirror pulse compressor for nonlinear microscopy

We demonstrated that the dispersion of scanning microscope optics (including a Zeiss 40×/1.2 Apochromat objective) can be compensated by means of chirped mirrors over a bandwidth of 170nm@800nm. The interferometric autocorrelation trace recorded at the focus of the microscope objective with a two-ph...

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Published in2006 Conference on Lasers and Electro-Optics and 2006 Quantum Electronics and Laser Science Conference pp. 1 - 2
Main Authors Tempea, G., Povazay, B., Assion, A., Isemann, A., Pervak, W., Kempe, M., Stingl, A., Drexler, W.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.05.2006
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Abstract We demonstrated that the dispersion of scanning microscope optics (including a Zeiss 40×/1.2 Apochromat objective) can be compensated by means of chirped mirrors over a bandwidth of 170nm@800nm. The interferometric autocorrelation trace recorded at the focus of the microscope objective with a two-photon diode indicated a pulse duration of ≪ 12 fs.
AbstractList We demonstrated that the dispersion of scanning microscope optics (including a Zeiss 40×/1.2 Apochromat objective) can be compensated by means of chirped mirrors over a bandwidth of 170nm@800nm. The interferometric autocorrelation trace recorded at the focus of the microscope objective with a two-photon diode indicated a pulse duration of ≪ 12 fs.
Author Kempe, M.
Povazay, B.
Drexler, W.
Isemann, A.
Pervak, W.
Stingl, A.
Tempea, G.
Assion, A.
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  organization: Carl Zeiss Jena GmbH, Research Center, Germany
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  surname: Drexler
  fullname: Drexler, W.
  organization: Institute of Medical Physics, Christian Doppler Laboratory, Waehringer Strasse 13, A-1090 Vienna, Austria
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Snippet We demonstrated that the dispersion of scanning microscope optics (including a Zeiss 40×/1.2 Apochromat objective) can be compensated by means of chirped...
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StartPage 1
SubjectTerms Bandwidth
Chirp
Correlation
Mirrors
Optical microscopy
Title All-chirped-mirror pulse compressor for nonlinear microscopy
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