Extraordinary magnetoresistance (EMR) is a geometric magnetoresistance emerging in hybrid systems typically comprising a high-mobility material and a metal. Due to a field-dependent redistribution of electrical currents in these devices, the electrical resistance at room temperature can increase by 10 ^7 % when applying a magnetic field of 5 T. Although EMR holds considerable potential for realizing sensitive, all-electronic magnetometers, this potential is largely unmet. A key challenge is that the performance of EMR devices depends very sensitively on variations in a vast parameter space where changes in the device geometry and material properties produce widely different EMR performances. The challenge of navigating in the large paramete...
A new version of the construction of the extraordinary magnetoresistance effect (EMR) based magnetic...
The study of electrical transport in magnetic materials has a long history. However, since the disco...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
Simulations utilising the finite element method (FEM) have been produced in order to investigate asp...
The Extraordinary Magnetoresistance (EMR) effect is a change in the resistance of a device upon the ...
We have fabricated extraordinary magnetoresistance (EMR) device, comprising a monolayer graphene wit...
Recently, it was shown that semiconductor-metal hybrid structures can exhibit a very large magnetore...
Extraordinary magnetoresistance (EMR) arises in hybrid systems consisting of semiconducting material...
Semiconductor–metal hybrid structures can exhibit a very large geometrical magnetoresistance effect,...
A two-contact extraordinary magnetoresistance (EMR) device has been fabricated and characterized at ...
Systems that exhibit the extraordinary magnetoresistance (EMR) effect and other more disordered semi...
The extraordinary magnetoresistance (EMR) in metal-semiconductor hybrid structures was first demonst...
We have used the finite element method to study the extraordinary magnetoresistance (EMR) effect of ...
The study of electrical transport in magnetic materials has a long history. However, since the disco...
We report on magnetotransport experiments performed at 4.2 K on hybrid structures consisting of a me...
A new version of the construction of the extraordinary magnetoresistance effect (EMR) based magnetic...
The study of electrical transport in magnetic materials has a long history. However, since the disco...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...
Simulations utilising the finite element method (FEM) have been produced in order to investigate asp...
The Extraordinary Magnetoresistance (EMR) effect is a change in the resistance of a device upon the ...
We have fabricated extraordinary magnetoresistance (EMR) device, comprising a monolayer graphene wit...
Recently, it was shown that semiconductor-metal hybrid structures can exhibit a very large magnetore...
Extraordinary magnetoresistance (EMR) arises in hybrid systems consisting of semiconducting material...
Semiconductor–metal hybrid structures can exhibit a very large geometrical magnetoresistance effect,...
A two-contact extraordinary magnetoresistance (EMR) device has been fabricated and characterized at ...
Systems that exhibit the extraordinary magnetoresistance (EMR) effect and other more disordered semi...
The extraordinary magnetoresistance (EMR) in metal-semiconductor hybrid structures was first demonst...
We have used the finite element method to study the extraordinary magnetoresistance (EMR) effect of ...
The study of electrical transport in magnetic materials has a long history. However, since the disco...
We report on magnetotransport experiments performed at 4.2 K on hybrid structures consisting of a me...
A new version of the construction of the extraordinary magnetoresistance effect (EMR) based magnetic...
The study of electrical transport in magnetic materials has a long history. However, since the disco...
This thesis focuses on the transport properties of graphene, a new emerging atomically thin, two-dim...