Coherent conversion between optical and microwave photonics is needed for future quantum applications. Here, the authors combine thin-film lithium niobate and superconductor platforms as a hybrid electro-optic system to achieve high-efficiency frequency conversion between microwave and optical modes
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...
We describe progress toward high-efficiency transduction between microwave and optical radiation usi...
© 2020 Optical Society of America. Linking superconducting quantum devices to optical fibers via mic...
Acoustic or mechanical resonators have emerged as a promising means to mediate efficient microwave-t...
Acoustic or mechanical resonators have emerged as a promising means to mediate efficient microwave-t...
Implementation of high-performance photonic integrated devices and circuits is becoming a growing es...
Ion-sliced thin-film lithium niobate (LN) compact waveguide technology has facilitated the resurgenc...
Abstract — A selection of microwave photonic systems using lithium niobate devices are presented. S...
Using integrated acousto-optic cavities on thin-film lithium niobate, we demonstrate efficient conve...
Taking advantage of the strong piezoelectricity of lithium niobate (LN) and the high-quality (Q) -fa...
Long distance interfaces between superconducting quantum information processing nodes would require ...
Superconducting qubits that operate at microwave frequencies are one of the most promising platforms...
Hybrid superconducting-photonic microresonators are a promising platform for realizing microwave-to-...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...
We describe progress toward high-efficiency transduction between microwave and optical radiation usi...
© 2020 Optical Society of America. Linking superconducting quantum devices to optical fibers via mic...
Acoustic or mechanical resonators have emerged as a promising means to mediate efficient microwave-t...
Acoustic or mechanical resonators have emerged as a promising means to mediate efficient microwave-t...
Implementation of high-performance photonic integrated devices and circuits is becoming a growing es...
Ion-sliced thin-film lithium niobate (LN) compact waveguide technology has facilitated the resurgenc...
Abstract — A selection of microwave photonic systems using lithium niobate devices are presented. S...
Using integrated acousto-optic cavities on thin-film lithium niobate, we demonstrate efficient conve...
Taking advantage of the strong piezoelectricity of lithium niobate (LN) and the high-quality (Q) -fa...
Long distance interfaces between superconducting quantum information processing nodes would require ...
Superconducting qubits that operate at microwave frequencies are one of the most promising platforms...
Hybrid superconducting-photonic microresonators are a promising platform for realizing microwave-to-...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Integrated photonics is becoming more and more multifunctional thanks to the recent availability of ...
Electrically actuated optomechanical resonators provide a route to quantum-coherent, bidirectional c...