In quantum information science, the phase of a wave function plays an important role in encoding information. Although most experiments in this field rely on dynamic effects to manipulate this information, an alternative approach is to use geometric phase, which has been argued to have potential fault tolerance. We demonstrated the controlled accumulation of a geometric phase, Berry's phase, in a superconducting qubit; we manipulated the qubit geometrically by means of microwave radiation and observed the accumulated phase in an interference experiment. We found excellent agreement with Berry's predictions and also observed a geometry-dependent contribution to dephasing
Recently, dynamical anomalies more than critical slowing down are often observed near both the conti...
The geometric phase manifests itself in many different phenomena of physics ranging from the polariz...
Irrational numbers can be assigned to physical entities based on iterative processes of geometric ob...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
Berry’s geometric phase naturally appears when a quantum system is driven by an external field whose...
A quantum system interacting with its environment is subject to dephasing, which ultimately destroys...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
We investigate quantum effects in geometric phases arising when a two-level system is interacting wi...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...
A feasible experiment was proposed to investigate quantum effects in geometric phases, arising when ...
We present a quantum open-system approach to analyze the nonunitary dynamics of a superconducting qu...
The state vector representing a quantum system acquires a phase factor following an adiabatic evolut...
Geometric phases play a central role in a variety of quantum phenomena, especially in condensed matt...
A significant development in computing has been the discovery that the computational power of quantu...
PosterInternational audienceThe geometric phase was first anticipated 1956 by Pancharatnam, in the c...
Recently, dynamical anomalies more than critical slowing down are often observed near both the conti...
The geometric phase manifests itself in many different phenomena of physics ranging from the polariz...
Irrational numbers can be assigned to physical entities based on iterative processes of geometric ob...
In quantum information science, the phase of a wave function plays an important role in encoding inf...
Berry’s geometric phase naturally appears when a quantum system is driven by an external field whose...
A quantum system interacting with its environment is subject to dephasing, which ultimately destroys...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
We investigate quantum effects in geometric phases arising when a two-level system is interacting wi...
Due to its geometric nature Berry's geometric phase exhibits stability to a great extent when expos...
A feasible experiment was proposed to investigate quantum effects in geometric phases, arising when ...
We present a quantum open-system approach to analyze the nonunitary dynamics of a superconducting qu...
The state vector representing a quantum system acquires a phase factor following an adiabatic evolut...
Geometric phases play a central role in a variety of quantum phenomena, especially in condensed matt...
A significant development in computing has been the discovery that the computational power of quantu...
PosterInternational audienceThe geometric phase was first anticipated 1956 by Pancharatnam, in the c...
Recently, dynamical anomalies more than critical slowing down are often observed near both the conti...
The geometric phase manifests itself in many different phenomena of physics ranging from the polariz...
Irrational numbers can be assigned to physical entities based on iterative processes of geometric ob...