We study magneto-tunnelling between two parallel two-dimensional electron gases theoretically, where the electrons have a pseudo-spin-½ degree of freedom that is coupled to their momentum. The two-dimensional electron gases focused on in this work are single layer graphene, bilayer graphene, and single layer molybdenum disulphide. The results are derived using a linear response theory formalism in the weak tunnelling regime, and it is assumed that the electron gases are at zero temperature, with no interactions or disorder. The linear magneto-tunnelling conductance characteristics for an applied in-plane and tilted magnetic field are found to strongly depend on the pseudo-spin structure of the tunnelling matrix and the pseudo-spin's depende...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
In the last few years, two dimensional crystals have become available for experimental studies. Good...
We study magneto-tunnelling between two parallel two-dimensional electron gases theoretically, where...
With the continuing demand for miniaturisation from the electronics industry, it becomes increasingl...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D s...
The unusual tunneling effects of massless chiral fermions (mCF) and massive chiral fermions (MCF) in...
A class of multilayered functional materials has recently emerged in which the component atomic laye...
Spin-dependent transport of relativistic electrons through graphene based double barrier (well) stru...
Graphene has been widely studied for its high in-plane charge carrier mobility and long spin diffusi...
We investigate theoretically the spin-independent tunneling magnetoresistance effect in a graphene m...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
The study of two-dimensional (2D) materials began with the seminal work of experimental isolation an...
Experimental studies presented in this thesis have shown the first realisation of resonant tunnellin...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
In the last few years, two dimensional crystals have become available for experimental studies. Good...
We study magneto-tunnelling between two parallel two-dimensional electron gases theoretically, where...
With the continuing demand for miniaturisation from the electronics industry, it becomes increasingl...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D s...
The unusual tunneling effects of massless chiral fermions (mCF) and massive chiral fermions (MCF) in...
A class of multilayered functional materials has recently emerged in which the component atomic laye...
Spin-dependent transport of relativistic electrons through graphene based double barrier (well) stru...
Graphene has been widely studied for its high in-plane charge carrier mobility and long spin diffusi...
We investigate theoretically the spin-independent tunneling magnetoresistance effect in a graphene m...
We investigate spin effects in transport across fully interacting, finite size graphene armchair nan...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
The study of two-dimensional (2D) materials began with the seminal work of experimental isolation an...
Experimental studies presented in this thesis have shown the first realisation of resonant tunnellin...
Insights into the fundamental properties of graphene’s Dirac-Weyl fermions have emerged from studies...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
In the last few years, two dimensional crystals have become available for experimental studies. Good...