تعريف

المرجعية وتفاصيل الاتصال

المراجع

Rahmani

Abdelali

أستاذ التعليم العالي

المغرب

مكناس

جامعة مولاي إسماعيل - مكناس . كلية العلوم - مكناس


بيانــات

Université My Ismail, Faculté des sciences, code postal : 50001

05 35 43 94 82

05 35 43 94 82

abd.rahmani@menara.ma

التكويــن العــالي

دكتوراه الدولة

Physique

Faculté des sciences dhar el mehraz - Fès

1996


دكتوراه الجامعة

Physique

Université Montpellier II - France

1993


اللغة

العربية; الإنجليزية; الفرنسية;

مجالات الخبرة
Calcul numérique intensif; Modélisation en physique; Nanomatériaux; Polymères; Fractal gels et verres
المشروعات البحثية
مشروع
Etude des propriétés physiques des nanomatériaux à base de carbone
الكلمات الرئيسية
Nanomatériaux, Nanotechnologie, Modélisation, Spectroscopies

مشروع
Simulations des réponses en spectroscopies vibrationnelles de systèmes de symétrie1-D : nanomatériaux et polymères conjugués
الكلمات الرئيسية
Nanotubes de carbone, Polymères, Modélisation, Spectroscopies

مشروع
Simulation numérique de la dynamique vibrationnelle de systèmes désordonnés. Application aux aérogels de silice
الكلمات الرئيسية
Fractal, Gel, Aerogel, Spectroscopies, Méthode des moments spectraux et dynamique moléculaire

مشروع
Détection et identification d’objets ou systèmes enfouis
الكلمات الرئيسية
Détection, Éléments finis, Méthode des moments spectraux, Propagation des ondes

الإنجازات العلمية والتكنولوجية

مقال الدورية

#1
Sbai K., Rahmani A., Chadli H., Sauvajol J-L. . Finite-size effect on the Raman-active modes of double-walled carbon nanotubes. J. Phys. Condens. Matter , 2008.
#2
Sbai K., Rahmani A., Chadli H., SauvajolJ-L. . Size and chirality effects on double-walled raman spectra. Mor. J. Condens Mat. , 2007.
#3
Chadli H., Rahmani A., Sbai K., Hermet P., Rols S., Sauvajol J.-L. . Raman active modes on linear and zigzag phases of fullerene peapods. Phys. Rev. B , 2006.
#4
Hermet P., Izard N., Rahmani A., Sauvajol J.-L. . Raman scattering in crystalline oligothiophenes : a comparaison between density functional theory and bond polarizability model . J. Phys. Chem B , 2006.
#5
Bantignies J.-L., Sauvajol J.-L., Rahmani A., Flahaut E. . Infrared-active phonons in carbon nanotubes. Phys. Rev. B , 2006.
#6
Sbai K., Rahmani A., Chadli H., Bantignies J.-L., Hermet P., Sauvajol J.-L. . Infrared spectroscopy of single-walled carbon nanotubes. J. Phys. Chem B , 2006.
#7
Chadli H., Rahmani A., Sauvajol J.-L., Sbai K. . Raman-active modes carbon peapods. Physica A , 2005.
#8
Hermet P., Bantignies J.-L., Rahmani A., Sauvajol J.-L., Johnson R. . Polymorphism of crystalline quaterthiophene and sexithiophene : ab initio analysis and comparison with inelastic neutron scattering response. J. Phys. Chem. A , 2005.
#9
Rahmani A., Sauvajol J.-L., Cambedouzou J., Benoit C. . Raman-active modes in finite and infinite double-walled carbon nanotube. Phys. Rev. B , 2005.
#10
Hermet P., Bantignies J.-L., Rahmani A., Sauvajol J.-L., Johnson R., Serein F. . Far- and Mid-infrared of crystalline 2,2’-bithiophene : Ab initio analysis and comparison with infrared response. J. Phys. Chem. A , 2005.
#11
Cambedouzou J., Sauvajol J.-L., Rahmani A., Flahaut E., Peigney A., Laurent C. . Raman spectroscopy of iodine-doped double-walled carbon nanotubes. Phys. Rev. B , 2004.
#12
Hermet P., Bantignies J.-L., Rahmani A., Sauvajol J.-L., Johnson R. . Density-of-states of crystalline 2,2´-bithiophene : ab initio analysis and comparison with inelastic neutron scattering response. J. Phys. Condens. Matter , 2004.
#13
Rahmani A., Benoit M., Benoit C. . Signature of small rings in the raman spectra of normal and compressed amorphous silica : a combined classical and ab initio study. Phys. Rev. B , 2003.
#14
Rahmani A., Sauvajol J.–L., Rols S., Benoit C. . Nonresonant raman spectrum in infinite and finite single-wall carbon nanotubes. Phys. Rev. B , 2002.
#15
Rahmani A., Jund P., Benoit C., Jullien R. . Numerical study of the dynamical properties of silica aerogels . J. Phys. Condens. Matter , 2001.