Superconducting cavities made from niobium allow accelerating gradients of about 50 MV/m close to the theoretical limit. Quite often, however, the rf losses increase with the gradient faster than quadratic. This observation is equivalent with a decrease of the quality factor Q with the gradient, called “Q slope” for intermediate gradients, and “Q drop” for larger ones. The paper provides an explanation by an elementary model based on the two-fluid theory of rf superconductivity and applies it to experimental data for a large variety of cavity tests
The near-surface nanostructure of niobium determines the performance of superconducting microwave ca...
The Q-factor of superconducting accelerating cavities can be substantially improved by a special hea...
In the two years since the 7th SRF workshop, a variety of cavity tests have been carried out with th...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of partic...
Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of partic...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
Superconducting niobium film cavities deposited on copper substrates (Nb/Cu) have suffered from stro...
International audienceThe different processes at the origin of the dependence of the surface resista...
The formula R-s = G/Q(0) is commonly used in the calculation of the surface resistance of radio freq...
Identifying the loss mechanisms of niobium cavities enables an accurate determination of application...
Identifying the loss mechanisms of niobium cavities enables an accurate determination of applicatio...
The goal of this research was to analyse data from multiple cavities in order to test the viability ...
The near-surface nanostructure of niobium determines the performance of superconducting microwave ca...
The Q-factor of superconducting accelerating cavities can be substantially improved by a special hea...
In the two years since the 7th SRF workshop, a variety of cavity tests have been carried out with th...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of partic...
Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of partic...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
Superconducting niobium film cavities deposited on copper substrates (Nb/Cu) have suffered from stro...
International audienceThe different processes at the origin of the dependence of the surface resista...
The formula R-s = G/Q(0) is commonly used in the calculation of the surface resistance of radio freq...
Identifying the loss mechanisms of niobium cavities enables an accurate determination of application...
Identifying the loss mechanisms of niobium cavities enables an accurate determination of applicatio...
The goal of this research was to analyse data from multiple cavities in order to test the viability ...
The near-surface nanostructure of niobium determines the performance of superconducting microwave ca...
The Q-factor of superconducting accelerating cavities can be substantially improved by a special hea...
In the two years since the 7th SRF workshop, a variety of cavity tests have been carried out with th...