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...
Low-loss superconducting rf devices are required when used for quantum computation. Here, we present...
In this letter, we present the direct loss tangent measurement of a high-resistivity intrinsic (100)...
Dielectric loss from different interfacial layers in the superconducting circuit and from external e...
AbstractThe improvement of the coherence times of superconducting qubits depends on the reduction of...
AbstractHydrogenated amorphous silicon (a-Si:H) grown by PECVD has a lower loss tangent (tan _) amon...
Low-loss deposited dielectrics will benefit superconducting devices such as integrated superconducti...
In this dissertation I describe measurements of dielectric loss at microwave frequencies due to two ...
Superconducting circuit elements used in millimeter-submillimeter (mm-submm) astronomy would greatly...
Advanced solid-state quantum bits (qubits) are likely to require a variety of dielectrics for wiring...
We perform an experimental and numerical study of dielectric loss in superconducting microwave reson...
Performance of superconducting resonators, particularly cavities for particle accelerators and micro...
Quantum sensing and computation can be realized with superconducting microwave circuits. Qubits are ...
We have measured the excited state lifetimes in Josephson junction phase and transmon qubits, all of...
1/f noise caused by microscopic two-level systems (TLS) is known to be very detrimental to the perfo...
Silicon-based dielectric is crucial for many superconducting devices, including high-frequency trans...
Low-loss superconducting rf devices are required when used for quantum computation. Here, we present...
In this letter, we present the direct loss tangent measurement of a high-resistivity intrinsic (100)...
Dielectric loss from different interfacial layers in the superconducting circuit and from external e...
AbstractThe improvement of the coherence times of superconducting qubits depends on the reduction of...
AbstractHydrogenated amorphous silicon (a-Si:H) grown by PECVD has a lower loss tangent (tan _) amon...
Low-loss deposited dielectrics will benefit superconducting devices such as integrated superconducti...
In this dissertation I describe measurements of dielectric loss at microwave frequencies due to two ...
Superconducting circuit elements used in millimeter-submillimeter (mm-submm) astronomy would greatly...
Advanced solid-state quantum bits (qubits) are likely to require a variety of dielectrics for wiring...
We perform an experimental and numerical study of dielectric loss in superconducting microwave reson...
Performance of superconducting resonators, particularly cavities for particle accelerators and micro...
Quantum sensing and computation can be realized with superconducting microwave circuits. Qubits are ...
We have measured the excited state lifetimes in Josephson junction phase and transmon qubits, all of...
1/f noise caused by microscopic two-level systems (TLS) is known to be very detrimental to the perfo...
Silicon-based dielectric is crucial for many superconducting devices, including high-frequency trans...
Low-loss superconducting rf devices are required when used for quantum computation. Here, we present...
In this letter, we present the direct loss tangent measurement of a high-resistivity intrinsic (100)...
Dielectric loss from different interfacial layers in the superconducting circuit and from external e...