The quantum bits (qubits) on which superconducting quantum computers are based have energy scales corresponding to photons with GHz frequencies. The energy of photons in the gigahertz domain is too low to allow transmission through the noisy room-temperature environment, where the signal would be lost in thermal noise. Optical photons, on the other hand, have much higher energies, and signals can be detected using highly efficient single-photon detectors. Transduction from microwave to optical frequencies is therefore a potential enabling technology for quantum devices. However, in such a device the optical pump can be a source of thermal noise and thus degrade the fidelity; the similarity of input microwave state to the output optical stat...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
Recent advances in observing and exploiting macroscopic mechanical motion at the quantum limit broug...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
The quantum bits (qubits) on which superconducting quantum computers are based have energy scales co...
Microwave-to-optical transducers are integral to the future of superconducting quantum computing, as...
Transduction of quantum signals between the microwave and the optical ranges will unlock powerful hy...
Transduction of quantum signals between the microwave and the optical ranges will unlock powerful hy...
Microwave photonics lends the advantages of fiber optics to electronic sensing and communication sys...
Microwave photonics lends the advantages of fiber optics to electronic sensing and communication sys...
Conventional ultra-high sensitivity detectors in the millimeter-wave range are usually cooled as the...
The ability to control and measure the temperature of propagating microwave modes down to very low t...
Conventional ultra-high sensitivity detectors in the millimeter-wave range are usually cooled as the...
This paper presents a study of noise in room-temperature THz radiometers that use THz-to-optical upc...
This paper presents a study of noise in room-temperature THz radiometers that use THz-to-optical upc...
Electromagnetic filtering is essential for the coherent control, operation and readout of supercondu...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
Recent advances in observing and exploiting macroscopic mechanical motion at the quantum limit broug...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
The quantum bits (qubits) on which superconducting quantum computers are based have energy scales co...
Microwave-to-optical transducers are integral to the future of superconducting quantum computing, as...
Transduction of quantum signals between the microwave and the optical ranges will unlock powerful hy...
Transduction of quantum signals between the microwave and the optical ranges will unlock powerful hy...
Microwave photonics lends the advantages of fiber optics to electronic sensing and communication sys...
Microwave photonics lends the advantages of fiber optics to electronic sensing and communication sys...
Conventional ultra-high sensitivity detectors in the millimeter-wave range are usually cooled as the...
The ability to control and measure the temperature of propagating microwave modes down to very low t...
Conventional ultra-high sensitivity detectors in the millimeter-wave range are usually cooled as the...
This paper presents a study of noise in room-temperature THz radiometers that use THz-to-optical upc...
This paper presents a study of noise in room-temperature THz radiometers that use THz-to-optical upc...
Electromagnetic filtering is essential for the coherent control, operation and readout of supercondu...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
Recent advances in observing and exploiting macroscopic mechanical motion at the quantum limit broug...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...