We investigate entanglement between electrons in serially coupled double quantum dots attached to noninteracting leads. In addition to local repulsion we consider the influence of capacitive inter-dot interaction. We show how the competition between extended Kondo and local singlet phases determines the ground state and thereby the entanglement. The results are additionally discussed in connection with the linear conductance through the system
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
Motivated by recent experiments we analyse a new setup of capacitively coupled semiconductor quantum...
We demonstrate coupling and entangling of quantum states in a pair of vertically aligned self assemb...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
We show that the competition between pair entanglement of two spin qubits in double quantum dots att...
We consider a triple quantum dot system in a triangular geometry with one of the dots conn...
We analyze the transport properties of a double quantum dot device with both dots coupled to perfect...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
We consider the simplest example of a double quantum dot system: two equivalent, capacitively couple...
In the present paper we are interested in analyzing the pairwise entanglement in quantum dots, as qu...
[[abstract]]Transition between quantum states in a double quantum dot (DQD) arising from strong elec...
We study the low-temperature physics arising in models of a strongly correlated, tunnel-coupled doub...
The transport properties of a system of two interacting dots, one of them directly connected to the ...
The numerical renormalization group is employed to study a double quantum (DQD) dot system consistin...
We study the interplay between Kondo correlations and the singlet-triplet exchange splitting K betwe...
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
Motivated by recent experiments we analyse a new setup of capacitively coupled semiconductor quantum...
We demonstrate coupling and entangling of quantum states in a pair of vertically aligned self assemb...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
We show that the competition between pair entanglement of two spin qubits in double quantum dots att...
We consider a triple quantum dot system in a triangular geometry with one of the dots conn...
We analyze the transport properties of a double quantum dot device with both dots coupled to perfect...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
We consider the simplest example of a double quantum dot system: two equivalent, capacitively couple...
In the present paper we are interested in analyzing the pairwise entanglement in quantum dots, as qu...
[[abstract]]Transition between quantum states in a double quantum dot (DQD) arising from strong elec...
We study the low-temperature physics arising in models of a strongly correlated, tunnel-coupled doub...
The transport properties of a system of two interacting dots, one of them directly connected to the ...
The numerical renormalization group is employed to study a double quantum (DQD) dot system consistin...
We study the interplay between Kondo correlations and the singlet-triplet exchange splitting K betwe...
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
Motivated by recent experiments we analyse a new setup of capacitively coupled semiconductor quantum...
We demonstrate coupling and entangling of quantum states in a pair of vertically aligned self assemb...