We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupling it to a stream of atoms in superpositions of high-lying Rydberg states. Our scheme relies on the driving of a two-phonon resonance within the oscillator by coupling it to an atomic two-photon transition. This approach effectuates a controllable open system dynamics on the oscillator that in principle permits versatile dissipative creation of squeezed and other nonclassical states which are central to sensing applications or for studies of fundamental questions concerning the boundary between classical and quantum-mechanical descriptions of macroscopic objects. We show that these features survive thermal coupling of the oscillator with the...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
We consider an open quantum system of ultracold Rydberg atoms. The system part consists of resonant ...
We consider an open quantum system of ultracold Rydberg atoms. The system part consists of resonant ...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
We observe synchronisation in a thermal (35-60 {\deg}C) atomic (Rb) ensemble driven to a highly-exci...
Recent experiments on quantum behavior in microfabricated solid-state systems suggest tantalizing co...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
We observe synchronization in a thermal (35–60°C) atomic (Rb) ensemble driven to a highly excited Ry...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
We propose schemes of controlled-Z and controlled-not gates with ultracold neutral atoms based on de...
We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechan...
Coupling electronic and vibrational degrees of freedom of Rydberg atoms held in optical tweezers arr...
This thesis presents several experiments investigating the regimes of behaviour of a proto-typical o...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
We consider an open quantum system of ultracold Rydberg atoms. The system part consists of resonant ...
We consider an open quantum system of ultracold Rydberg atoms. The system part consists of resonant ...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
We explore the possibility of engineering quantum states of a charged mechanical oscillator by coupl...
We observe synchronisation in a thermal (35-60 {\deg}C) atomic (Rb) ensemble driven to a highly-exci...
Recent experiments on quantum behavior in microfabricated solid-state systems suggest tantalizing co...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
Originally, closed-orbit theory was developed in order to analyze oscillations in the near ionizatio...
We observe synchronization in a thermal (35–60°C) atomic (Rb) ensemble driven to a highly excited Ry...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
We propose schemes of controlled-Z and controlled-not gates with ultracold neutral atoms based on de...
We propose and analyze a setup to achieve strong coupling between a single trapped atom and a mechan...
Coupling electronic and vibrational degrees of freedom of Rydberg atoms held in optical tweezers arr...
This thesis presents several experiments investigating the regimes of behaviour of a proto-typical o...
In any physical platform, two ingredients are essential for quantum information processing: single-q...
We consider an open quantum system of ultracold Rydberg atoms. The system part consists of resonant ...
We consider an open quantum system of ultracold Rydberg atoms. The system part consists of resonant ...