УДК: 535.14535.015
Two-photon absorption of quasi-steady-state radiation and supershort light pulses in broad-band semiconductors
Full text «Opticheskii Zhurnal»
Full text on elibrary.ru
Publication in Journal of Optical Technology
Осипова М.О., Перлин Е.Ю. Двухфотонное поглощение квазистационарного излучения и сверхкоротких световых импульсов в широкозонных полупроводниках // Оптический журнал. 2016. Т. 83. № 6. С. 3–6.
Osipova M.O., Perlin E.Yu. Two-photon absorption of quasi-steady-state radiation and supershort light pulses in broad-band semiconductors [in Russian] // Opticheskii Zhurnal. 2016. V. 83. № 6. P. 3–6.
M. O. Osipova and E. Yu. Perlin, "Two-photon absorption of quasi-steady-state radiation and supershort light pulses in broad-band semiconductors," Journal of Optical Technology. 83(6), 329-331 (2016). https://doi.org/10.1364/JOT.83.000329
This article compares the energy U absorbed during two-photon interband resonance, calculated for the cases of quasi-steady-state optical radiation and femtosecond laser pulses. Comparison of the dependences of U on the laser pulse width obtained for these cases showed that the greatest differences occur when the photogenerated charge carriers have short pulse-relaxation times.
two-photon transitions, femtosecond light pulses, broad-band crystals
Acknowledgements:This work was carried out in terms of the design part of a state program involving scientific activity—Projects Nos. 3.1675.2014/K and 3.821.2014/K.
The authors thank V. G. Bespalov for help in the studies.
OCIS codes: 190.0190, 320.0320, 160.6000
References:1. G. Cerullo, S. De Silvestri, M. Nisoli, S. Sartania, S. Stagira, and O. Svelto, “Few-optical-cycle laser pulses: from high peak power to frequency tunability,” IEEE J. Sel. Top. Quantum Electron. 6(6), 948–958 (2000).
2. D. M. Simanovskii, H. A. Schwettman, H. Lee, and A. J. Welch, “Midinfrared optical breakdown in transparent dielectrics,” Phys. Rev. Lett. 91, 107601 (2003).
3. S. W. Winkler, I. M. Burakov, R. Stoian, N. M. Bulgakova, A. Husakou, A. Mermillod-Blondin, A. Rosenfeld, D. Ashkenasi, and I. V. Hertel, “Transient response of dielectric materials exposed to ultrafast laser radiation,” Appl. Phys. A 84, 413–422 (2006).
4. J. Bonze, G. Bachelier, J. Siegel, J. Solis, and H. Sturm, “Time- and space-resolved dynamics of ablation and optical breakdown induced by femtosecond laser pulses in indium phosphide,” J. Appl. Phys. 103, 054910 (2008).
5. E. Yu. Perlin, “The optical Stark effect in transient double resonance in semiconductors,” J. Exp. Theor. Phys. 78(1), 98–104 (1994) [Zh. Eksp. Teor. Fiz. 105(1), 186–197 (1994)].
6. E. Yu. Perlin, K. A. Eliseev, É. G. Idrisov, and Ya. T. Khalilov, “Nonlinear absorption of femtosecond light pulses accompanying two-photon resonance in bulk crystals and nanostructures,” J. Opt. Technol. 78(9), 563–569 (2011) [Opt. Zh. 78(9), 3–12 (2011)].
7. E. Yu. Perlin, K. A. Eliseev, É. G. Idrisov, and Ya. T. Khalilov, “Nonlinear absorption of femtosecond light pulses under conditions of multiphoton resonances in solids,” Opt. Spectrosc. 112(6), 850–856 (2012) [Opt. Spektrosk. 112(6), 920–927 (2012)].
8. É. G. Idrisov and E. Yu. Perlin, “Nonlinear absorption of light pulses under conditions of two-photon resonance in bulk crystals and nanostructures in the femtosecond pump-probe spectroscopy mode,” Opt. Spectrosc. 115(3), 435–444 (2013) [Opt. Spektrosk. 115(3), 497–507 (2013)].
9. E. Yu. Perlin, K. A. Eliseev, E. G. Idrisov, and Ya. T. Khalilov, “Nonlinear absorption of femtosecond light pulses under multiphoton resonance conditions,” J. Phys. Conf. Ser. 461, 012002 (2013).
10. E. Yu. Perlin, A. V. Fedorov, and T. A. Vartanyan, Solid-State Physics. Optics of Semiconductors, Dielectrics, and Metals (RIO St. Petersburg State Univ. of Information Technologies, and Optics, St. Petersburg, 2008), p. 170.
11. O. Madelung, Physics of III–V Compounds (Wiley, New York, 1964; Mir, Moscow, 1967).
12. I. K. Kikoin, Tables of Physical Quantities (Atomizdat, Moscow, 1976).