W. R. Tribe
University of Cambridge
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Featured researches published by W. R. Tribe.
Physical Review B | 1998
K. J. Thomas; J. T. Nicholls; N. J. Appleyard; M. Y. Simmons; M. Pepper; D. R. Mace; W. R. Tribe; D. A. Ritchie
We have investigated the transport properties of one-dimensional (1D) constrictions defined by split-gates in high quality
Physical Review B | 1999
K. J. Thomas; J. T. Nicholls; M. Y. Simmons; W. R. Tribe; A. G. Davies; M. Pepper
{mathrm{G}mathrm{a}mathrm{A}mathrm{s}/mathrm{A}mathrm{l}}_{x}{mathrm{Ga}}_{1ensuremath{-}x}mathrm{As}
Physical Review Letters | 1998
N. J. Appleyard; J. T. Nicholls; M. Y. Simmons; W. R. Tribe; M. Pepper
heterostructures. In addition to the usual quantized conductance plateaus, the equilibrium conductance shows a structure close to
Physical Review B | 2000
K. J. Thomas; J. T. Nicholls; M. Pepper; W. R. Tribe; M. Y. Simmons; D. A. Ritchie
{0.7(2e}^{2}/h)
Physica E-low-dimensional Systems & Nanostructures | 1998
M. J. Steer; D. J. Mowbray; M. S. Skolnick; W. R. Tribe; A. N. Forshaw; D. M. Whittaker; J. S. Roberts; A. G. Cullis; G. Hill; M. A. Pate; C.R. Whitehouse
, and in consolidating our previous work [K. J. Thomas et al., Phys. Rev. Lett. 77, 135 (1996)] this 0.7 structure has been investigated in a wide range of samples as a function of temperature, carrier density, in-plane magnetic field
international conference on infrared, millimeter, and terahertz waves | 2005
L. Spencer; M. Pepper; D. A. Ritchie; G. A. C. Jones; Harvey E. Beere; I. S. Gregory; W. R. Tribe; Michael Evans
{B}_{ensuremath{Vert}},
international conference on infrared, millimeter, and terahertz waves | 2004
C. Baker; Ian S. Gregory; W. R. Tribe; Michael Evans; M. Missous; E. H. Linfield
and source-drain voltage
Journal of Applied Physics | 2000
S. A. Nield; J. T. Nicholls; W. R. Tribe; M. Y. Simmons; D. A. Ritchie
{V}_{mathrm{sd}}.
Physica E-low-dimensional Systems & Nanostructures | 2000
Ld Macks; C. H. W. Barnes; J. T. Nicholls; W. R. Tribe; D. A. Ritchie; P.D Rose; E. H. Linfield; M. Pepper
We show that the 0.7 structure is not due to transmission or resonance effects, nor does it arise from the asymmetry of the heterojunction in the growth direction. All the 1D subbands show Zeeman splitting at high
international conference on infrared, millimeter, and terahertz waves | 2004
Ian S. Gregory; T.D. Drysdale; W. R. Tribe; David R. S. Cumming; Michael Evans; M. Missous; E. H. Linfield
{B}_{ensuremath{Vert}},