We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated substrate under the influence of an external magnetic field or strain induced pseudomagnetic field. We demonstrate that the application of the magnetic field can substantially increase or decrease the decay rate. We show that a suppression as large as 99% in the Purcell factor is achieved even for moderate magnetic fields. The emitter's lifetime is a discontinuous function of |B|, which is a direct consequence of the occurrence of discrete Landau levels in graphene. We demonstrate that, in the near-field regime, the magnetic field enables an unprecedented control of the decay pathways into which the photon/polariton can be emitted. Our finding...
A new effect in graphene in the presence of crossed uniform electric and magnetic fields is predicte...
The electromagnetic mode spectrum of single-layer graphene subjected to a quantizing magnetic field ...
Weshow that, on general theoretical grounds, transmission of light in graphene always presents a non...
We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated s...
We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated s...
In this thesis we propose new, versatile schemes to control light-matter interactions at the nanosca...
The research progress toward creating efficient light sources on graphene-based electronic-photonic ...
Solving the Schrödinger problem for electrons in graphene subjected to both a stationary magnetic fi...
Lattice deformations couple to the low-energy electronic excitations of graphene as vector fields si...
Combining the quantum optical properties of single-photon emitters with the strong near-field intera...
The creation of pseudo-magnetic fields in strained graphene has emerged as a promising route to inve...
In the present paper the magneto-optical Franz-Keldysh effect is predicted to occur in graphene. Exp...
We investigate the spontaneous emission lifetime of a quantum emitter near a substrate coated with p...
Placing a two-dimensional sheet of graphene in an external magnetic field the continuous electronic ...
We theoretically study the Landau level spectrum of a graphene bilayer subjected to a magnetic field...
A new effect in graphene in the presence of crossed uniform electric and magnetic fields is predicte...
The electromagnetic mode spectrum of single-layer graphene subjected to a quantizing magnetic field ...
Weshow that, on general theoretical grounds, transmission of light in graphene always presents a non...
We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated s...
We investigate the spontaneous emission rate of a two-level quantum emitter near a graphene-coated s...
In this thesis we propose new, versatile schemes to control light-matter interactions at the nanosca...
The research progress toward creating efficient light sources on graphene-based electronic-photonic ...
Solving the Schrödinger problem for electrons in graphene subjected to both a stationary magnetic fi...
Lattice deformations couple to the low-energy electronic excitations of graphene as vector fields si...
Combining the quantum optical properties of single-photon emitters with the strong near-field intera...
The creation of pseudo-magnetic fields in strained graphene has emerged as a promising route to inve...
In the present paper the magneto-optical Franz-Keldysh effect is predicted to occur in graphene. Exp...
We investigate the spontaneous emission lifetime of a quantum emitter near a substrate coated with p...
Placing a two-dimensional sheet of graphene in an external magnetic field the continuous electronic ...
We theoretically study the Landau level spectrum of a graphene bilayer subjected to a magnetic field...
A new effect in graphene in the presence of crossed uniform electric and magnetic fields is predicte...
The electromagnetic mode spectrum of single-layer graphene subjected to a quantizing magnetic field ...
Weshow that, on general theoretical grounds, transmission of light in graphene always presents a non...