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Équipe de Recherche en Physique de l'Information Quantique



Publications


1996
[16]
Coleridge, P.T. and Feng, Y. and Lafontaine, H. and Sachrajda, A.S. and Williams, R. and Zawadzki, P.,
Magnetotransport properties of p-type strained SiGe quantum wells,
Conference on Optoelectronic & Microelectronic Materials and Devices, Proceedings, COMMAD, (414-421), 1996,
[bib] [url]
[15]
Coleridge, P.T. and Hayne, M. and Zawadzki, P. and Sachrajda, A.S.,
Effective masses in high-mobility 2D electron gas structures,
Surface Science, 361-362, (560-563), 1996,
[bib] [url]
[14]
Coleridge, P.T. and Sachrajda, A.S. and Lafontaine, H. and Feng, Y.,
Magnetotransport coefficients in a two-dimensional SiGe hole gas,
Physical Review B - Condensed Matter and Materials Physics, 54, (14518-14523), 1996,
[bib] [url]
[13]
Gould, C. and Sachrajda, A. and Feng, Y. and Delage, A. and Kelly, P.J. and Coleridge, P.T.,
Demonstration of device conductance modulation by electrostatic control of the electron phase,
Canadian Journal of Physics, 74, (S207-S211), 1996,
[bib] [url]
[12]
Gould, C. and Sachrajda, A.S. and Dharma-wardana, M.W.C. and Feng, Y. and Coleridge, P.T.,
"Spectator" modes and antidot molecules,
Physical Review Letters, 77, (5272-5275), 1996,
[bib] [url]
[11]
Newbury, R. and Taylor, R.P. and Sachrajda, A.S. and Coleridge, P.T. and Feng, Y. and Davies, M. and McCaffrey, J.P.,
Ohmic contact spike arrays for nanostructure device fabrication: Spike distribution and geometrical scattering of the electron-wave current,
Conference on Optoelectronic & Microelectronic Materials and Devices, Proceedings, COMMAD, (192-195), 1996,
[bib] [url]
[10]
Noat, Y., Reulet, B., Bouchiat, H.,
Magneto-polarisability of mesoscopic rings,
Europhysics Letters, 36, (701-706), 1996,
[bib] [url]
[9]
Sachrajda, A. and Feng, Y. and Delage, A. and Kelly, P. and Carmona, H. and Main, P.C. and Eaves, L.,
Investigations of composite fermions in semiconductor nanostructures,
Journal of Physics Condensed Matter, 8, (3019-3032), 1996,
[bib] [url]
[8]
Sachrajda, A.S. and Feng, Y. and Carmona, H.A. and Geim, A.K. and Main, P.C. and Eaves, L. and Foxon, C.T.,
Mesoscopic transport properties of composite fermions,
Surface Science, 361-362, (59-62), 1996,
[bib] [url]
[7]
Sachrajda, A.S. and Feng, Y. and Taylor, R.P. and Newbury, R. and Coleridge, P.T. and Mccaffrey, J.P.,
The topological transition from a Corbino to Hall bar geometry,
Superlattices and Microstructures, 20, (655-656), 1996,
[bib] [url]
[6]
Sachrajda, A.S. and Gould, C. and Feng, Y. and Dharma-Wardana, M.W.C. and Coleridge, P.T.,
Tunnelling experiments through coupled zero-dimensional systems,
Surface Science, 361-362, (627-630), 1996,
[bib] [url]
[5]
Taylor, R.P. and Newbury, R. and Sachrajda, A.S. and Coleridge, P.T. and Zawadzki, P. and Dunford, R.B. and Feng, Y. and Bird, J.P. and Leavens, C.R. and Cadogan, J.M. and Adams, J.A. and Kelly, P.J. and Davies, M. and Brown, S.A.,
The use of wide ballistic cavities to investigate local weak localization processes induced by geometric scattering,
Semiconductor Science and Technology, 11, (1189-1197), 1996,
[bib] [url]
[4]
Taylor, R.P. and Newbury, R. and Sachrajda, A.S. and Feng, Y. and Coleridge, P.T.,
Tunable semiconductor Sinai billiards,
Conference on Optoelectronic & Microelectronic Materials and Devices, Proceedings, COMMAD, (171-174), 1996,
[bib] [url]
[3]
Taylor, R.P. and Newbury, R. and Sachrajda, A.S. and Feng, Y. and Coleridge, P.T. and Delage, A. and Kelly, P.J. and Wasilewski, Z. and Zawadzki, P. and Zhu, N. and Guo, H.,
Geometry induced quantum interference: A continuous evoloution from square to Sinai billiard,
Superlattices and Microstructures, 20, (296-305), 1996,
[bib] [url]
[2]
Taylor, R.P. and Newbury, R. and Sachrajda, A.S. and Feng, Y. and Coleridge, P.T. and Delage, A. and Kelly, P.J. and Wasilewski, Z. and Zawadzki, P. and Zhu, Ningjia and Guo, Hong,
Geometry induced quantum interference: a continuous evolution from square to Sinai billiard,
Superlattices and Microstructures, 20, (297-305), 1996,
[bib] [url]
[1]
Y. Noat, B. Reulet and H. Bouchiat,
AC Conductance of isolated Aharonov-Bohm rings coupled to an electromagnetic resonator,
ed. T. Martin, G. Montambaux and J. Tran Thanh Van, coll. Frontiers, Correlated fermions and transport in mesocopic structures, (131), 1996,
[bib]