M. L. Sadowski

Publication List Details

Period

1998 - 2008

Number

38

Co-Authors

Magneto-transmission as a probe of Dirac fermions in bulk graphite (2008)

Orlita, M., Faugeras, C., Martinez, G., Maude, D. K., Sadowski, M. L., Schneider, J. M., ...

Far infrared magneto-transmission spectroscopy has been used to probe "relativistic" fermions in highly oriented pyrolytic and natural graphite. Nearly identical transmission spectra of those two...

Dirac fermions at the H point of graphite: Magneto-transmission studies (2007)

Orlita, M., Faugeras, C., Martinez, G., Maude, D. K., Sadowski, M. L., Potemski, M.

We report on far infrared magneto-transmission measurements on a thin graphite sample prepared by exfoliation of highly oriented pyrolytic graphite. In magnetic field, absorption lines exhibiting a...

High-Energy Limit of Massless Dirac Fermions in Multilayer Graphene using Magneto-Optical Transmission Spectroscopy (2007)

Plochocka, P., Faugeras, C., Orlita, M., Sadowski, M. L., Martinez, G., Potemski, M., ...

We have investigated the absorption spectrum of multilayer graphene in high magnetic fields. The low energy part of the spectrum of electrons in graphene is well described by the relativistic Dirac...

Magnetospectroscopy of epitaxial few-layer graphene (2007)

Sadowski, M. L., Martinez, G., Potemski, M., Berger, C., De Heer, W. A.

The inter-Landau level transitions observed in far-infrared transmission experiments on few-layer graphene samples show a behaviour characteristic of the linear dispersion expected in graphene. This...

Landau level spectroscopy of ultrathin graphite layers (2006)

Sadowski, M. L., Martinez, G., Potemski, M., Berger, C., De Heer, W. A.

Far infrared transmission experiments are performed on ultrathin epitaxial graphite samples in a magnetic field. The observed cyclotron resonance-like and electron-positron-like transitions are in...

Landau level spectroscopy of ultrathin graphite layers (2006)

Sadowski, M. L., Martinez, G., Potemski, M., Berger, C., De Heer, W. A.

Far infrared transmission experiments are performed on ultrathin epitaxial graphite samples in a magnetic field. The observed cyclotron resonancelike and electron-positron-like transitions are in...

Magneto-optical spectroscopy of (Ga,Mn)N epilayers (2006)

Marcet, S., Ferrand, D., Halley, D., Kuroda, S., Mariette, H., Gheeraert, E., ...

We report on the magneto-optical spectroscopy and cathodoluminescence of a set of wurtzite (Ga,Mn)N epilayers with a low Mn content, grown by molecular-beam epitaxy. The sharpness of the absorption...

Optically detected cyclotron resonance in a high mobility 2D electron gas (2006)

Moreau, S., Byszewski, M., Sadowski, M. L., Potemski, M., Studenikin, S. A., Austing, G., ...

We study the properties of high mobility GaAs/GaAlAs quantum well structure by monitoring the microwave induced changes in the low-temperature photoluminescence of the 2DEG as a function of the...

Intraband magnetospectroscopy of singly and doubly charged n-type self-assembled quantum dots (2006)

Carpenter, B. A., Zibik, E. A., Sadowski, M. L., Wilson, L. R., Whittaker, D. M., Cockburn, J. W., ...

The influence of quantum dot occupancy and incident light polarization on the carrier-lattice interactions in electron-doped InAs quantum dots grown on GaAs has been investigated up to 28 T by...

Nd3+ crystal field excitations under magnetic field in La1.65Nd0.35CuO4 (2004)

Jandl, S., Riou, G., Richard, P., Sadowski, M. L., Sutjahja, I. M., Menovsky, A. A.

We report an infrared crystal field study, under magnetic field, of Nd3+ ions in non-stoichiometric La1.65Nd0.35CuO4. Two sets of crystal field excitations from the ground state multiplet I-4(9/2) to...

Optical studies of Mn2+ spin resonance in (Cd,Mn)Te quantum wells (2004)

Byszewski, M., Plantier, D., Sadowski, M. L., Potemski, M., Sachrajda, A., Wilamowski, Z., ...

We report optical investigations of Mn2+ spin resonance in (Cd,Mn)Te dilute magnetic semiconductor quantum wells. Raman scattering spin-flip measurements and optically detected magnetic resonance...