We report on the immersion of a spin qubit encoded in a single trapped ion into a spin-polarized neutral atom environment, which possesses both continuous (motional) and discrete (spin) degrees of freedom. The environment offers the possibility of a precise microscopic description, which allows us to understand dynamics and decoherence from first principles. We observe the spin dynamics of the qubit and measure the decoherence times (T(1) and T(2)), which are determined by the spin-exchange interaction as well as by an unexpectedly strong spin-nonconserving coupling mechanism
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
The dynamics of a spin-1/2 particle coupled to a nuclear spin bath through an isotropic Heisenberg i...
The quantum simulation of complex many body systems holds promise for understanding the origin of em...
We report on observations of spin dynamics in single Yb+ ions immersed in a cold cloud of spin-polar...
Many schemes for implementing quantum information processing require that the atomic states used hav...
In this thesis we describe an experimental setup designed for preparing an ultracold sample of 6Li a...
We review the problem of spin decoherence of magnetic atoms deposited on a surface. Recent breakthro...
We study decoherence induced on a two-level system coupled to a one-dimensional quantum spin chain. ...
A major problem facing the realisation of scalable solid-state quantum computing is that of overcomi...
We study the time evolution of a single spin coupled inhomogeneously to a spin environment. Such a s...
[[abstract]]We systematically investigate the universal spin decoherence dynamics of a localized ele...
Quantum states with long-lived coherence are essential for quantum computation, simulation and metro...
Quantum computing is an emerging area within the information sciences revolving around the concept o...
The dynamics and decoherence of an electronic spin-1/2 qubit coupled to a bath of nuclear spins via ...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
The dynamics of a spin-1/2 particle coupled to a nuclear spin bath through an isotropic Heisenberg i...
The quantum simulation of complex many body systems holds promise for understanding the origin of em...
We report on observations of spin dynamics in single Yb+ ions immersed in a cold cloud of spin-polar...
Many schemes for implementing quantum information processing require that the atomic states used hav...
In this thesis we describe an experimental setup designed for preparing an ultracold sample of 6Li a...
We review the problem of spin decoherence of magnetic atoms deposited on a surface. Recent breakthro...
We study decoherence induced on a two-level system coupled to a one-dimensional quantum spin chain. ...
A major problem facing the realisation of scalable solid-state quantum computing is that of overcomi...
We study the time evolution of a single spin coupled inhomogeneously to a spin environment. Such a s...
[[abstract]]We systematically investigate the universal spin decoherence dynamics of a localized ele...
Quantum states with long-lived coherence are essential for quantum computation, simulation and metro...
Quantum computing is an emerging area within the information sciences revolving around the concept o...
The dynamics and decoherence of an electronic spin-1/2 qubit coupled to a bath of nuclear spins via ...
In recent years, improved control of the motional and internal quantum states of ultracold neutral a...
The realization of spin-based logical gates crucially depends on magnetically coupled spin qubits. T...
The dynamics of a spin-1/2 particle coupled to a nuclear spin bath through an isotropic Heisenberg i...
The quantum simulation of complex many body systems holds promise for understanding the origin of em...