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Dive into the research topics where D. Bertho is active.

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Featured researches published by D. Bertho.


Physical Review B | 1996

Weak antilocalization and spin precession in quantum wells

W. Knap; C. Skierbiszewski; A. Zduniak; E. Litwin-Staszewska; D. Bertho; F. Kobbi; J. L. Robert; G. E. Pikus; F. G. Pikus; S. V. Iordanskii; V. Mosser; Konstantinos Zekentes; Yu. B. Lyanda-Geller

The results of magnetoconductivity measurements in


Applied Physics Letters | 1997

Optical properties of two-dimensional photonic crystals with graphite structure

D. Cassagne; C. Jouanin; D. Bertho

{\mathrm{Ga}}_{\mathit{x}}


Applied Physics Letters | 1996

InAs monolayers and the controlled introduction of deep levels in AlGaAs alloys

Raffaele Colombelli; Jean-Marc Jancu; Fabio Beltram; Lucia Sorba; D. Bertho; Christian Jouanin


Il Nuovo Cimento D | 1995

New hexagonal structures for two-dimensional photonic band gap materials

D. Cassagne; C. Jouanin; D. Bertho

{\mathrm{In}}_{1\mathrm{\ensuremath{-}}\mathit{x}}


Superlattices and Microstructures | 1994

Electronic and optical properties of corrugated GaAs/AlAs superlattices

Christian Jouanin; D. Bertho

As quantum wells are presented. The observed magnetoconductivity appears due to the quantum interference, which lead to the weak localization effect. It is established that the details of the weak localization are controlled by the spin splitting of electron spectra. A theory is developed that takes into account both linear and cubic in electron wave-vector terms in spin splitting, which arise due to the lack of inversion center in the crystal, as well as the linear terms that appear when the well itself is asymmetric. It is established that, unlike spin-relaxation rate, contributions of different terms into magnetoconductivity are not additive. It is demonstrated that in the interval of electron densities under investigation [(0.98-1.85)\ifmmode\times\else\texttimes\fi{}


Archive | 1996

Two-Dimensional Photonic Band Gaps: New Hexagonal Structures

D. Cassagne; C. Jouanin; D. Bertho

{10}^{12}


Physical Review B | 1996

Hexagonal photonic-band-gap structures

D. Cassagne; C. Jouanin; D. Bertho


Physical Review B | 1995

Photonic band gaps in a two-dimensional graphite structure

D. Cassagne; C. Jouanin; D. Bertho

{\mathrm{cm}}^{\mathrm{\ensuremath{-}}2}


Physical Review B | 1998

CONFINEMENT AND SHAPE EFFECTS ON THE OPTICAL SPECTRA OF SMALL CDSE NANOCRYSTALS

V. Albe; C. Jouanin; D. Bertho

] all three contributions are comparable and have to be taken into account to achieve a good agreement between the theory and experiment. The results obtained from comparison of the experiment and the theory have allowed us to determine what mechanisms dominate the spin-relaxation in quantum wells and to improve the accuracy of determination of spin-splitting parameters in


Physical Review B | 2000

Generalized Wannier function method for photonic crystals

J. P. Albert; C. Jouanin; D. Cassagne; D. Bertho

{\mathit{A}}_{3}

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C. Jouanin

University of Montpellier

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D. Cassagne

University of Montpellier

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Jean-Marc Jancu

University of Montpellier

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Philippe Boring

University of Montpellier

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V. Albe

University of Montpellier

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A. Hallaoui

University of Montpellier

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A. Zduniak

University of Montpellier

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B. Gil

University of Montpellier

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