activity
20072014
most citedDisorder suppressed charge-density-wave and its origin in 1T-TaSe2-xTex

109 citations · 223 across the 5 of their papers we have counts for

collaborators

10 papers

cond-mat.mes-hall2014★ 98 cited

Perfect charge compensation in WTe2 for the extraordinary magnetoresistance: From bulk to monolayer

H. Y. Lv, W. J. Lu, D. F. Shao +3

The electronic structure of WTe2 bulk and layers are investigated by using the first principles calculations. The perfect electron-hole (n-p) charge compensation and high carrier m…

cond-mat.str-el2014★ 109 cited

Disorder suppressed charge-density-wave and its origin in 1T-TaSe2-xTex

Y. Liu, D. F. Shao, W. J. Lu +9

In the sake of connecting the charge-density-wave (CDW) of TaSe and single-\emph{\textbf{q}} CDW-type distortion of TaTe, we present an overall electronic phase diagram of…

cond-mat.mes-hall2012

High magnetoresistance in graphene nanoribbon heterojunction

S. Bala Kumar, M. B. A. Jalil, S. G. Tan

We show a large magnetoresistance(MR) effect in a graphene heterostructure consisting of an metallic(M) and semiconductor(SC)-type armchair-graphene-nanoribbon(aGNR). In the hetero…

cond-mat.mes-hall2012

Non-equilibrium spatial distribution of Rashba spin torque in ferromagnetic metal layer

N. L. Chung, M. B. A. Jalil, S. G. Tan

We study the spatial distribution of spin torque induced by a strong Rashba spin-orbit coupling (RSOC) in a ferromagnetic (FM) metal layer, using the Keldysh non-equilibrium Green'…

cond-mat.mes-hall2011

High magnetoresistance at room temperature in p-i-n graphene nanoribbons due to band-to-band tunneling effects

Gengchiau Liang, S. Bala kumar, M. B. A. Jalil +1

A large magnetoresistance effect is obtained at room-temperature by using p-i-n armchair-graphene-nanoribbon (GNR) heterostructures. The key advantage is the virtual elimination of…

cond-mat.mes-hall2010★ 16 cited

The effect of magnetic field and disorders on the electronic transport in graphene nanoribbons

S. Bala Kumar, M. B. A. Jalil, S. G. Tan +1

We developed a unified mesoscopic transport model for graphene nanoribbons, which combines the non-equilibrium Green's function (NEGF) formalism with the real-space π-orbital model…