We have investigated both the temperature and the power dependence of microwave losses for various dielectrics commonly used as substrates for the growth of high critical temperature superconductor thin films. We present measurement of niobium superconducting lambda/2 coplanar waveguide resonators, fabricated on MgO, LaAlO3, and (La0.3Sr0.7)(Al0.65Ta0.35)O-3 (LSAT), at the millikelvin temperature range and at low input power. By comparing our results with the two-level system model, we have discriminated among different dominant loss mechanisms. LSAT has shown the best results as regards the dielectric losses in the investigated regimes
Dielectric materials are the backbone of all high frequency communicatiol1 devices and circuits. The...
The discovery of high temperature superconductor oxides has raised the possibility of a new class of...
A novel dielectric resonator operating at cryogenic temperatures (14–85 K) at a frequency of 10 GHz ...
We have investigated both the temperature and the power dependence of microwave losses for various d...
We have investigated the temperature dependence of microwave losses in the low-power limit and milli...
We present a systematic analysis of the internal losses of superconducting coplanar waveguide microw...
Accurate data of complex permittivity of dielectric substrates are needed for efficient design of HT...
[Extract] Commercialisation of High Temperature Superconducting microwave circuits to communication ...
Accurate data of complex permittivity of dielectric substrates is needed for efficient design of HTS...
The permittivity and loss tangent of a dielectric material can be estimated from precise measurement...
To obtain low loss and better performance of high temperature superconducting (HTS) microwave device...
Klein N, Jin BB, Wordenweber R, et al. Microwave properties of MgB(2) thin films. IEEE Transactions ...
Novel low loss materials are needed to achieve miniaturization and further advances in wireless comm...
AbstractMicrowave losses in niobium (Nb) superconducting resonators are investigated at milli-Kelvin...
The microwave power dependence of high quality Tl(Ba,Sr)2Ca2Cu3Oy thin films grown on 1'' diameter L...
Dielectric materials are the backbone of all high frequency communicatiol1 devices and circuits. The...
The discovery of high temperature superconductor oxides has raised the possibility of a new class of...
A novel dielectric resonator operating at cryogenic temperatures (14–85 K) at a frequency of 10 GHz ...
We have investigated both the temperature and the power dependence of microwave losses for various d...
We have investigated the temperature dependence of microwave losses in the low-power limit and milli...
We present a systematic analysis of the internal losses of superconducting coplanar waveguide microw...
Accurate data of complex permittivity of dielectric substrates are needed for efficient design of HT...
[Extract] Commercialisation of High Temperature Superconducting microwave circuits to communication ...
Accurate data of complex permittivity of dielectric substrates is needed for efficient design of HTS...
The permittivity and loss tangent of a dielectric material can be estimated from precise measurement...
To obtain low loss and better performance of high temperature superconducting (HTS) microwave device...
Klein N, Jin BB, Wordenweber R, et al. Microwave properties of MgB(2) thin films. IEEE Transactions ...
Novel low loss materials are needed to achieve miniaturization and further advances in wireless comm...
AbstractMicrowave losses in niobium (Nb) superconducting resonators are investigated at milli-Kelvin...
The microwave power dependence of high quality Tl(Ba,Sr)2Ca2Cu3Oy thin films grown on 1'' diameter L...
Dielectric materials are the backbone of all high frequency communicatiol1 devices and circuits. The...
The discovery of high temperature superconductor oxides has raised the possibility of a new class of...
A novel dielectric resonator operating at cryogenic temperatures (14–85 K) at a frequency of 10 GHz ...