Quantum transducers between microwave and optical photons are essential for long-distance quantum networks based on superconducting qubits. An optically active self-assembled quantum dot molecule (QDM) is an attractive platform for the implementation of a quantum transducer because an exciton in a QDM can be efficiently coupled to both optical and microwave fields at the single-photon level. Recently, the transduction between microwave and optical photons has been demonstrated with a QDM integrated with a superconducting resonator. In this paper, we present a design of a QD-high impedance resonator device with a low microwave loss and an expected large single-microwave photon coupling strength of 100s of MHz. We integrate self-assembled QDs...
Quantum microwave transmission is key to realizing modular superconducting quantum computers and dis...
Superconducting microwave circuits with Josephson junctions are a major platform for quantum computi...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
The requirements and details of designing a measuring cell and low-back-action deeply-cooled amplifi...
We explore the energetics of microwaves interacting with a double quantum dot photodiode structure a...
Low-loss fiber optic links have the potential to connect superconducting quantum processors together...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
We propose a novel quantum transduction hybrid system based on the coupling of long-coherence time s...
The public defense on 5th June 2020 at 13:00 (1 p.m.) will be organized via remote technology. Link...
From microwave ovens to satellite television to the GPS and data services on our mobile phones, micr...
Quantum microwave transmission is key to realizing modular superconducting quantum computers and dis...
Superconducting microwave circuits with Josephson junctions are a major platform for quantum computi...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
Quantum transduction between the microwave and optical domains is an outstanding challenge for long-...
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instr...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
The requirements and details of designing a measuring cell and low-back-action deeply-cooled amplifi...
We explore the energetics of microwaves interacting with a double quantum dot photodiode structure a...
Low-loss fiber optic links have the potential to connect superconducting quantum processors together...
Circuit quantum electrodynamics (QED) employs superconducting microwave resonators as quantum buses....
We propose a novel quantum transduction hybrid system based on the coupling of long-coherence time s...
The public defense on 5th June 2020 at 13:00 (1 p.m.) will be organized via remote technology. Link...
From microwave ovens to satellite television to the GPS and data services on our mobile phones, micr...
Quantum microwave transmission is key to realizing modular superconducting quantum computers and dis...
Superconducting microwave circuits with Josephson junctions are a major platform for quantum computi...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...