AbstractThe improvement of the coherence times of superconducting qubits depends on the reduction of the dielectric losses in the insulating materials implemented for the device fabrication. These losses depend on the density of spurious dipoles of different nature (two-level systems, TLSs) which couple to phase qubits and, hence, limit their coherence times. Hydrogenated amorphous silicon (a-Si:H), because of its lower loss tangent (tan δ) among conventional dielectrics (a-SiO, a-SiO2, a-SiNx:H), is considered as the best amorphous dielectric for superconducting qubit application. We have developed a reliable method for the direct measurement of dielectric losses in amorphous dielectric thin films using a novel design based on four lumped s...
Novel low loss materials are needed to achieve miniaturization and further advances in wireless comm...
Silicon-based dielectric is crucial for many superconducting devices, including high-frequency trans...
In this study, we show that deposited Ge and Si dielectric thin-films can exhibit low microwave loss...
AbstractThe improvement of the coherence times of superconducting qubits depends on the reduction of...
Superconducting circuit elements used in millimeter-submillimeter (mm-submm) astronomy would greatly...
Low-loss deposited dielectrics will benefit superconducting devices such as integrated superconducti...
[Extract] Commercialisation of High Temperature Superconducting microwave circuits to communication ...
AbstractHydrogenated amorphous silicon (a-Si:H) grown by PECVD has a lower loss tangent (tan _) amon...
We present a lab-on-chip experiment to accurately measure losses of superconducting microstrip lines...
Abstract—Dielectric loss in low-temperature superconducting integrated circuits can cause lower over...
In this dissertation I describe measurements of dielectric loss at microwave frequencies due to two ...
Hydrogenated amorphous silicon (a-Si:H) grown by PECVD has a lower loss tangent (tanδ) among convent...
We built and measured radio-frequency (RF) loss tangent, tan , evaluation structures using float-zon...
The work presented in this thesis belongs to the area of microwave characterisation of High Temperat...
Dielectric materials are the backbone of all high frequency communicatiol1 devices and circuits. The...
Novel low loss materials are needed to achieve miniaturization and further advances in wireless comm...
Silicon-based dielectric is crucial for many superconducting devices, including high-frequency trans...
In this study, we show that deposited Ge and Si dielectric thin-films can exhibit low microwave loss...
AbstractThe improvement of the coherence times of superconducting qubits depends on the reduction of...
Superconducting circuit elements used in millimeter-submillimeter (mm-submm) astronomy would greatly...
Low-loss deposited dielectrics will benefit superconducting devices such as integrated superconducti...
[Extract] Commercialisation of High Temperature Superconducting microwave circuits to communication ...
AbstractHydrogenated amorphous silicon (a-Si:H) grown by PECVD has a lower loss tangent (tan _) amon...
We present a lab-on-chip experiment to accurately measure losses of superconducting microstrip lines...
Abstract—Dielectric loss in low-temperature superconducting integrated circuits can cause lower over...
In this dissertation I describe measurements of dielectric loss at microwave frequencies due to two ...
Hydrogenated amorphous silicon (a-Si:H) grown by PECVD has a lower loss tangent (tanδ) among convent...
We built and measured radio-frequency (RF) loss tangent, tan , evaluation structures using float-zon...
The work presented in this thesis belongs to the area of microwave characterisation of High Temperat...
Dielectric materials are the backbone of all high frequency communicatiol1 devices and circuits. The...
Novel low loss materials are needed to achieve miniaturization and further advances in wireless comm...
Silicon-based dielectric is crucial for many superconducting devices, including high-frequency trans...
In this study, we show that deposited Ge and Si dielectric thin-films can exhibit low microwave loss...