We discuss hybrid systems in which a mechanical oscillator is coupled to another (microscopic) quantum system, such as trapped atoms or ions, solid-state spin qubits, or superconducting devices. We summarize and compare different coupling schemes and describe first experimental implementations. Hybrid mechanical systems enable new approaches to quantum control of mechanical objects, precision sensing, and quantum information processing
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
We consider a hybrid system, imagined experimentally realised in circuit QED, consisting of a driven...
The embedding of a quantum mechanical region in a molecular mechanical environment allows a theoreti...
We discuss hybrid systems in which a mechanical oscillator is coupled to another (microscopic) quant...
Abstract We discuss hybrid systems in which a mechanical oscillator is coupled to another (microscop...
Quantum opto- and electromechanical systems interface mechanical motion with the electromagnetic mod...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Abstract. We discuss prospects of building hybrid quantum devices involving elements of atomic and m...
As various platforms are being developed in quantum information science, measures to interconnect di...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
International audienceThe rise of quantum information science has provided new perspectives on quant...
We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interac...
We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interac...
International audienceAn extensively pursued current direction of research in physics aims at the de...
International audienceAn extensively pursued current direction of research in physics aims at the de...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
We consider a hybrid system, imagined experimentally realised in circuit QED, consisting of a driven...
The embedding of a quantum mechanical region in a molecular mechanical environment allows a theoreti...
We discuss hybrid systems in which a mechanical oscillator is coupled to another (microscopic) quant...
Abstract We discuss hybrid systems in which a mechanical oscillator is coupled to another (microscop...
Quantum opto- and electromechanical systems interface mechanical motion with the electromagnetic mod...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Abstract. We discuss prospects of building hybrid quantum devices involving elements of atomic and m...
As various platforms are being developed in quantum information science, measures to interconnect di...
We propose and investigate a hybrid optomechanical system consisting of a micro-mechanical oscillato...
International audienceThe rise of quantum information science has provided new perspectives on quant...
We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interac...
We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interac...
International audienceAn extensively pursued current direction of research in physics aims at the de...
International audienceAn extensively pursued current direction of research in physics aims at the de...
We present a hybrid optomechanical system in which a membrane oscillator is coupled to ultracold ato...
We consider a hybrid system, imagined experimentally realised in circuit QED, consisting of a driven...
The embedding of a quantum mechanical region in a molecular mechanical environment allows a theoreti...