We use a microwave field to control the quantum state of optical photons stored in a cold atomic cloud. The photons are stored in highly excited collective states (Rydberg polaritons) enabling both fast qubit rotations and control of photon-photon interactions. Through the collective read-out of these pseudospin rotations it is shown that the microwave field modifies the long-range interactions between polaritons. This technique provides a powerful interface between the microwave and optical domains, with applications in quantum simulations of spin liquids, quantum metrology and quantum networks
Using electromagnetically induced transparency and photon storage, the strong dipolar interactions b...
Trapped Rydberg ions are a promising new platform for quantum computation and simulation. They combi...
Trapped Rydberg ions are a promising new platform for quantum computation and simulation. They combi...
We use a microwave field to control the quantum state of optical photons stored in a cold atomic clo...
We use a microwave field to control the quantum state of optical photons stored in a cold atomic clo...
A microwave field is used to control the interaction between pairs of optical photons stored in high...
A microwave field is used to control the interaction between pairs of optical photons stored in high...
A microwave field is used to control the interaction between pairs of optical photons stored in high...
This thesis proposes a means of implementing quantum information processing using photonic qubits as...
This thesis proposes a novel method to implement universal quantum gates for photonic qubits using t...
Controllably producing optical photons and making them interact are two key requirements for the dev...
Controllably producing optical photons and making them interact are two key requirements for the dev...
Controllably producing optical photons and making them interact are two key requirements for the dev...
This thesis contains a statistical analysis of the resonant transmission of photons through an ensem...
Designing materials with specific properties has been a long-time goal of the physics community. Op...
Using electromagnetically induced transparency and photon storage, the strong dipolar interactions b...
Trapped Rydberg ions are a promising new platform for quantum computation and simulation. They combi...
Trapped Rydberg ions are a promising new platform for quantum computation and simulation. They combi...
We use a microwave field to control the quantum state of optical photons stored in a cold atomic clo...
We use a microwave field to control the quantum state of optical photons stored in a cold atomic clo...
A microwave field is used to control the interaction between pairs of optical photons stored in high...
A microwave field is used to control the interaction between pairs of optical photons stored in high...
A microwave field is used to control the interaction between pairs of optical photons stored in high...
This thesis proposes a means of implementing quantum information processing using photonic qubits as...
This thesis proposes a novel method to implement universal quantum gates for photonic qubits using t...
Controllably producing optical photons and making them interact are two key requirements for the dev...
Controllably producing optical photons and making them interact are two key requirements for the dev...
Controllably producing optical photons and making them interact are two key requirements for the dev...
This thesis contains a statistical analysis of the resonant transmission of photons through an ensem...
Designing materials with specific properties has been a long-time goal of the physics community. Op...
Using electromagnetically induced transparency and photon storage, the strong dipolar interactions b...
Trapped Rydberg ions are a promising new platform for quantum computation and simulation. They combi...
Trapped Rydberg ions are a promising new platform for quantum computation and simulation. They combi...