We consider a new quantum gate mechanism based on electron spins in coupled semiconductor quantum dots. Such gates provide a general source of spin entanglement and can be used for quantum computers. We determine the exchange coupling J in the effective Heisenberg model as a function of magnetic (B) and electric fields, and of the inter-dot distance a within the Heitler-London approximation of molecular physics. This result is refined by using sp-hybridization, and by the Hund-Mulliken molecular-orbit approach which leads to an extended Hubbard description for the two-dot system that shows a remarkable dependence on B and a due to the long-range Coulomb interaction. We find that the exchange J changes sign at a finite field (leading to a pr...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
In this thesis we consider fundamental problems in relation to the development of a quantum computer...
Heisenberg exchange coupling between neighboring electron spins in semiconductor quantum dots provid...
The electron spin is a natural two-level system that allows a qubit to be encoded. When localized in...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
We present a theoretical study of magnetic interaction in quantum dots with magnetic $Mn^{2+}$ in do...
\u3cp\u3eWe develop a theory for spin transport and magnetization dynamics in a quantum dot spin val...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
Recent achievements in the field of gate defined semiconductor quantum dots reinforce the concept of...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
In this thesis we consider fundamental problems in relation to the development of a quantum computer...
Heisenberg exchange coupling between neighboring electron spins in semiconductor quantum dots provid...
The electron spin is a natural two-level system that allows a qubit to be encoded. When localized in...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
Recently, an implementation of a universal set of one- and two-quantum-bit gates for quantum computa...
We present a theoretical study of magnetic interaction in quantum dots with magnetic $Mn^{2+}$ in do...
\u3cp\u3eWe develop a theory for spin transport and magnetization dynamics in a quantum dot spin val...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
Recent achievements in the field of gate defined semiconductor quantum dots reinforce the concept of...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
The decoherence and fidelity of spin states in a localized single-electron quantum dot in the presen...
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e.,...
In this thesis we consider fundamental problems in relation to the development of a quantum computer...