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PHOTONIQUE POUR LES LASERS À CASCADE QUANTIQUE ...

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tel-00740111, version 1 - 9 Oct 2012<br />

RÉFÉRENCES<br />

[62] E. D. Palik. Handbook of optical constants of solids. Academic<br />

Press, (1997).<br />

[63] M. Bahriz. “Lasers à cascade quantique à plasmon de surface et<br />

leurs applications aux cristaux photoniques”. PhD (2008).<br />

[64] V. Moreau. “Etude du confinement optique dans les lasers à cascade<br />

quantique et leurs applications à la détection”. PhD (2008).<br />

[65] C. Sirtori, C. Gmachl, F. Capasso, J. Faist, D. L. Sivco, A. L. Hutchinson,<br />

and A. Y. Cho. “Long-wavelength (λ ≈ 8 − 11.5 µm) semiconductor<br />

lasers with waveguides based on surface plasmons”. Opt.<br />

Lett. 23, 1366 (1998).<br />

[66] M. Bahriz, V. Moreau, J. Palomo, R. Colombelli, D. Austin, J. Cockburn,<br />

L. Wilson, A. Krysa, and J. Roberts. “Room-temperature operation<br />

of λ = 7.5 µm surface-plasmon quantum cascade lasers”.<br />

Appl. Phys. Lett. 88, 181103 (2006).<br />

[67] H. Poth, H. Bruch, M. Heyen, and P. Balk. “Electron mobility in vaporgrown<br />

gaas films”. J. Appl. Phys. 49, 285–288 (1978).<br />

[68] P. G. Huggard, J. A. Cluff, G. P. Moore, C. J. Shaw, S. R. Andrews,<br />

S. R. Keiding, E. H. Linfield, and D.A. Ritchie. “Drude conductivity<br />

of highly doped gaas at terahertz frequencies”. J. Appl. Phys. 87,<br />

2382–2385 (2000).<br />

[69] C. Walther, G. Scalari, J. Faist, H. Beere, and D. Ritchie. “Low frequency<br />

terahertz quantum cascade laser operating from 1.6 to 1.8<br />

thz”. Appl. Phys. Lett. 89, 231121 (2006).<br />

[70] K. Unterrainer, R. Colombelli, C. Gmachl, F. Capasso, H. Y. Hwang,<br />

A. M. Sergent, D. L. Sivco, and A. Y. Cho. “Quantum cascade lasers<br />

with double metal-semiconductor waveguide resonators”. Appl.<br />

Phys. Lett. 80(17), 3060–3062 April (2002).<br />

[71] Jose A Encimar and J. M. Rebollar. “Convergence of numerical solutions<br />

of open-ended waveguide by modal analysis and hybrid modal<br />

- spectral techniques”. IEEE Trans. Microwave Theory Tech. 34(7),<br />

809–814 (1986).<br />

[72] M. A. Belkin, J. A. Fan, S. Hormoz, F. Capasso, S.P. Khanna, M. Lachab,<br />

A. G. Davies, and E. H. Linfield. “Terahertz quantum cascade<br />

lasers with copper metal-metal waveguides operating up to 178 K”.<br />

Optics Express 16, 3242 (2008).<br />

[73] B. J. Williams. “Terahertz quantum cascade lasers”. PhD (2003).<br />

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