Low microwave loss in deposited Si and Ge thin-film dielectrics at single-photon power and low temperatures
arXiv:2011.10155 · doi:10.1063/5.0041525
Abstract
Our study shows that deposited Ge and Si dielectric thin-films can exhibit low microwave losses at near single-photon powers and sub-Kelvin temperatures (40 mK). This low loss enables their use in a wide range of devices, including low-loss coplanar, microstrip, and stripline resonators, as well as layers for device isolation, inter-wiring dielectrics, and passivation in microwave and Josephson junction circuit fabrication. We use coplanar microwave resonator structures with narrow trace widths of 2-16 to maximize the sensitivity of loss tangent measurements to the interface and properties of the deposited dielectrics, rather than to optimize the quality factor. In this configuration, thermally-evaporated thick amorphous germanium (a-Ge) films deposited on Si (100) have a single photon loss tangent of and, -thick chemical vapor deposited (CVD) homoepitaxial Si has a single photon loss tangent of . Interface contamination limits the loss in these devices.
References in corpus (5)
- Microwave Dielectric Loss at Single Photon Energies and milliKelvin Temperatures
- Materials loss measurements using superconducting microwave resonators
- Reducing intrinsic loss in superconducting resonators by surface treatment and deep etching of silicon substrates
- Single crystal silicon capacitors with low microwave loss in the single photon regime
- Quantum Sensors for Microscopic Tunneling Systems