To create carbon-based nanoscale integrated electronic, photonic, and spintronic circuit one must demonstrate the three functionalities in a single material, graphene quantum dots (GQDs), by engineering lateral size, shape, edges, number of layers and carrier density. We show theoretically that spatial confinement in GQDs opens an energy gap tunable from UV to THz, making GQDs equivalent to semiconductor nanoparticles. When connected to leads, GQDs act as single-electron transistors. The energy gap and absorption spectrum can be tuned from UV to THz by size and edge engineering and by external electric and magnetic fields. The sublattice engineering in, e.g., triangular graphene quantum dots (TGQDs) with zigzag edges generates a finite magn...
Finding reliable methods to exploit molecular degrees of freedom represents an intriguing problem in...
Altres ajuts: The Center for Nanostructured Graphene (CNG) is sponsored by the Danish National Re- s...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...
To create carbon-based nanoscale integrated electronic, photonic, and spintronic circuit one must de...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
We show that the magnetization of triangular graphene quantum dots with zigzag edges can be manipula...
The scope of this thesis is the coherence of spins in carbon-based nanodevices. The motivation for t...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
The discovery of graphene in 2004 added a new candidate to the pool of host materials for quantum de...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
We investigate quantum transport properties of triangular graphene flakes with zigzag edges by using...
The discovery of two-dimensional (2D) atomic materials, starting with graphene in 2004, and now incl...
Finding reliable methods to exploit molecular degrees of freedom represents an intriguing problem in...
Altres ajuts: The Center for Nanostructured Graphene (CNG) is sponsored by the Danish National Re- s...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...
To create carbon-based nanoscale integrated electronic, photonic, and spintronic circuit one must de...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
We show that the magnetization of triangular graphene quantum dots with zigzag edges can be manipula...
The scope of this thesis is the coherence of spins in carbon-based nanodevices. The motivation for t...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
The discovery of graphene in 2004 added a new candidate to the pool of host materials for quantum de...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
We investigate quantum transport properties of triangular graphene flakes with zigzag edges by using...
The discovery of two-dimensional (2D) atomic materials, starting with graphene in 2004, and now incl...
Finding reliable methods to exploit molecular degrees of freedom represents an intriguing problem in...
Altres ajuts: The Center for Nanostructured Graphene (CNG) is sponsored by the Danish National Re- s...
Spintronics, which manipulate spins but not electron charge, are highly valued as energy and thermal...