The use of the spin degree of freedom for computation represents a promising approach in the field of spintronics to overcome the fundamental challenges that will be faced by the semiconductor industry the following years. One of the major requirements for spintronics is the transport of spins over long distances at room temperature. For this purpose, graphene emerges as a wonder material, since it has the longest spin relaxation length predicted theoretically. In this thesis we use atomically flat boron nitride flakes to protect a bilayer graphene channel from environmental contamination and achieve spin relaxation lengths up to 24 micrometers at low temperatures. Moreover, to transport spins over longer distances at room temperature, we h...
Graphene offers long spin propagation and, at the same time, a versatile platform to engineer its ph...
\u3cp\u3eWe have performed spin and charge transport measurements in dual gated high mobility bilaye...
A single atom thick layer of graphite is known as graphene. Despite its simplicity, graphene has mad...
The use of the spin degree of freedom for computation represents a promising approach in the field o...
We performed spin transport measurements on boron nitride based single layer graphene devices with m...
Spintronics is a promising field to meet the future requirements to information technology. The term...
The outstanding spin transport properties of graphene make it an ideal candidate for chip scale spin...
Electrical control of spin signals and long distance spin transport are major requirements in the fi...
Graphene has drawn plenty of attention since its discovery in 2004. Due to its excellent properties,...
We have performed spin and charge transport measurements in dual gated high mobility bilayer graphen...
We present a new fabrication method of graphene spin-valve devices that yields enhanced spin and cha...
Graphene is an ideal medium for long-distance spin communication in future spintronic technologies. ...
We have performed spin and charge transport measurements in dual gated high mobility bilayer graphen...
We report on the first systematic study of spin transport in bilayer graphene (BLG) as a function of...
Graphene offers long spin propagation and, at the same time, a versatile platform to engineer its ph...
\u3cp\u3eWe have performed spin and charge transport measurements in dual gated high mobility bilaye...
A single atom thick layer of graphite is known as graphene. Despite its simplicity, graphene has mad...
The use of the spin degree of freedom for computation represents a promising approach in the field o...
We performed spin transport measurements on boron nitride based single layer graphene devices with m...
Spintronics is a promising field to meet the future requirements to information technology. The term...
The outstanding spin transport properties of graphene make it an ideal candidate for chip scale spin...
Electrical control of spin signals and long distance spin transport are major requirements in the fi...
Graphene has drawn plenty of attention since its discovery in 2004. Due to its excellent properties,...
We have performed spin and charge transport measurements in dual gated high mobility bilayer graphen...
We present a new fabrication method of graphene spin-valve devices that yields enhanced spin and cha...
Graphene is an ideal medium for long-distance spin communication in future spintronic technologies. ...
We have performed spin and charge transport measurements in dual gated high mobility bilayer graphen...
We report on the first systematic study of spin transport in bilayer graphene (BLG) as a function of...
Graphene offers long spin propagation and, at the same time, a versatile platform to engineer its ph...
\u3cp\u3eWe have performed spin and charge transport measurements in dual gated high mobility bilaye...
A single atom thick layer of graphite is known as graphene. Despite its simplicity, graphene has mad...