Microelectromechanical systems and integrated photonics provide the basis for many reliable and compact circuit elements in modern communication systems. Electro-opto-mechanical devices are currently one of the leading approaches to realize ultra-sensitive, low-loss transducers for an emerging quantum information technology. Here we present an on-chip microwave frequency converter based on a planar aluminum on silicon nitride platform that is compatible with slot-mode coupled photonic crystal cavities. We show efficient frequency conversion between two propagating microwave modes mediated by the radiation pressure interaction with a metalized dielectric nanobeam oscillator. We achieve bidirectional coherent conversion with a total device ef...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
As various platforms are being developed in quantum information science, measures to interconnect di...
Low-loss fiber optic links have the potential to connect superconducting quantum processors together...
Microelectromechanical systems and integrated photonics provide the basis for many reliable and comp...
Microelectromechanical systems and integrated photonics provide the basis for many reliable and comp...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
Practical quantum networks require low-loss and noise-resilient optical interconnects as well as non...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
Practical quantum networks require low-loss and noise-resilient optical interconnects as well as non...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
[EN] Nanoelectro-opto-mechanical systems enable the synergistic coexistence of electrical, mechanica...
A strong trend for quantum-based technologies and applications follows the avenue of combining diffe...
[EN] Nanoelectro-opto-mechanical systems enable the synergistic coexistence of electrical, mechanica...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
As various platforms are being developed in quantum information science, measures to interconnect di...
Low-loss fiber optic links have the potential to connect superconducting quantum processors together...
Microelectromechanical systems and integrated photonics provide the basis for many reliable and comp...
Microelectromechanical systems and integrated photonics provide the basis for many reliable and comp...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
Practical quantum networks require low-loss and noise-resilient optical interconnects as well as non...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
Practical quantum networks require low-loss and noise-resilient optical interconnects as well as non...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
[EN] Nanoelectro-opto-mechanical systems enable the synergistic coexistence of electrical, mechanica...
A strong trend for quantum-based technologies and applications follows the avenue of combining diffe...
[EN] Nanoelectro-opto-mechanical systems enable the synergistic coexistence of electrical, mechanica...
Radiation pressure has recently been used to effectively couple the quantum motion of mechanical ele...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
A quantum network consisting of computational nodes connected by high-fidelity communication channel...
As various platforms are being developed in quantum information science, measures to interconnect di...
Low-loss fiber optic links have the potential to connect superconducting quantum processors together...