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Trapped Ion Quantum Computing
Superconducting Qubits
High-Q photonic resonators and electro-optic coupling using silicon-on-lithium-niobate
arXiv
Authors: Jeremy D. Witmer, Joseph A. Valery, Patricio Arrangoiz-Arriola, Christopher J. Sarabalis, Jeff T. Hill, Amir H. Safavi-Naeini
Year
2016
Paper ID
41968
Status
Preprint
Abstract Read
~2 min
Abstract Words
132
Citations
N/A
Abstract
Future quantum networks in which superconducting quantum processors are connected via optical links, will require microwave-to-optical photon converters that preserve entanglement. A doubly-resonant electro-optic modulator (EOM) is a promising platform to realize this conversion. Here, we present our progress towards building such a modulator by demonstrating the optically-resonant half of the device. We demonstrate high quality factor ring, disk and photonic crystal resonators using a hybrid silicon-on-lithium-niobate material system. Optical quality factors up to 730,000 are achieved, corresponding to propagation loss of 0.8 dB/cm. We also use the electro-optic effect to modulate the resonance frequency of a photonic crystal cavity, achieving a electro-optic modulation coefficient between 1 and 2 pm/V. In addition to quantum technology, we expect that our results will be useful both in traditional silicon photonics applications and in high-sensitivity acousto-optic devices.
Why This Paper Matters
- This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
- It adds a 2016 reference point for readers tracking recent quantum research.
- Future quantum networks in which superconducting quantum processors are connected via optical links, will require microwave-to-optical photon converters that preserve entanglement.
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