Two-photon absorption coefficient in relation to the typical pulse models of laser

The two-photon absorption (TPA) coefficient ( β) relating to pulse models of laser is theoretically studied based on the nonlinear absorption equation. An expression of nonlinear energy transmission is obtained, in which a factor ( g) is introduced to describe the β deviation resulting from the puls...

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Veröffentlicht in:Optics communications 2010-05, Vol.283 (9), p.1924-1928
Hauptverfasser: Zhao, Peide, Zhang, Zhidong, Bao, Wenxia, Yu, Qing, Zhang, Yong, Zhang, Zhongya, Wang, Dayun, Liu, Ming
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Sprache:eng
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Zusammenfassung:The two-photon absorption (TPA) coefficient ( β) relating to pulse models of laser is theoretically studied based on the nonlinear absorption equation. An expression of nonlinear energy transmission is obtained, in which a factor ( g) is introduced to describe the β deviation resulting from the pulse profile of laser. The relative deviation can be then expressed as (1/ g − 1)% for comparing β obtained based on other pulse models of laser with β 0 based on the rectangular one. The values of g factor and the deviation of some typical ultra-short pulse models used nowadays are also calculated and presented. Our results suggest that the β deviations from the temporal pulse shapes should not be neglected in usual nonlinear transmission measurement. The g factor may become a useful parameter in taking account of this deviation.
ISSN:0030-4018
1873-0310
DOI:10.1016/j.optcom.2010.01.004