By Klaus J. Vetter
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18 PHYSICS, CHEMISTRY AND APPLICATION OF NANOSTRUCTURES, 2003 INVITED NONLINEAR OPTICAL PROPERTIES OF ONE-DIMENSIONAL PHOTONIC CRYSTALS C. SIBILIA, G. D'AGUANNO, M. CENTINI, M. C. LARCIPRETE, M. BERTOLOTTI INFM at Dipartimento di Energetica, Universita di Roma "La Sapienza " Via A. it M. SCALORA, M. S. Army Aviation & Missile Command, Building 7804, Redstone Arsenal, AL 35898-5000, USA An overview of nonlinear interactions in finite, one-dimensional, photonic band gap structures with deep gratings is presented.
6 eV) is related to the band bending induced by the Schottky barrier formation upon metal deposition. At 2 ML coverage the states at EF, arising from Fe, grow up while A and D are attenuated. 1 eV) with respect the situation of 1 ML. This indicates that the Schottky barrier height is stable upon further Fe deposition. The spectra referring to 1 and 2 Fe ML are spin integrated: no trace of spin polarization is seen up to 6-8 ML coverage, both at room temperature and at 100K. At 8 ML a difference between the spin-up and spin-down channels clearly appears at ~ 2 eV above EF, in the region of the peak B2 of the pure Fe surface.
Travnikov, Phys. Stat. Sol. (b) 231 R7 (2002). 9. V. G. Golubev, V. A. Kosobukin, D. A. Kurdyukov, A. V. Medvedev, A. B. Pevtsov, Semiconductors 35 680 (2001). 10. V. G. Golubev, D. A. Kurdyukov, A. B. Pevtsov, A. V. Sel'kin, E. B. Shadrin, A. V. IFinskii, R. Boeyink, Semiconductors 36 1043 (2002). 11. A. V. Scherbakov, A. V. Akimov, V. G. Golubev, A. A. Kaplyanskii, D. A. Kurdyukov, A. A. Meluchev, A. B. Pevtsov, Phys. E (2003) to be published. 31 PHYSICS, CHEMISTRY AND APPLICATION OF NANOSTRUCTURES, 2003 INVITED I N T E R B A N D T R A N S I T I O N S I N Si N A N O S T R U C T U R E S W I T H I N EFFECTIVE MASS APPROXIMATION X.