We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electric field tuned by two independent voltages. First, we control tunneling events through an applied electric field along the nanowire growth direction. Second, we modify the chemical potential in the nanowire with a back-gate. We combine these two field-effects to isolate a single electron and independently tune the tunnel coupling of the quantum dot with the contacts. Such charge control is a first requirement for opto-electrical single electron spin experiments on a nanowire quantum dot
In this paper we present our recent developments in control and manipulation of individual spins and...
Electron localized in a quantum dot in the vicinity of conductor surface, causes an induced potentia...
Single spins in the solid state offer a unique opportunity to store and manipulate quantum informati...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
Electron localized in a quantum dot in the vicinity of conductor surface, causes an induced potentia...
Single spins in the solid state offer a unique opportunity to store and manipulate quantum informati...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
In this paper we present our recent developments in control and manipulation of individual spins and...
Electron localized in a quantum dot in the vicinity of conductor surface, causes an induced potentia...
Single spins in the solid state offer a unique opportunity to store and manipulate quantum informati...