Theoretical limits to the performance of superconductors in high magnetic fields parallel to their surfaces are of key relevance to current and future accelerating cavities, especially those made of new higher-T c materials such as Nb3Sn, NbN, and MgB2. Indeed, beyond the so-called superheating field ${H}_{\mathrm{sh}}$, flux will spontaneously penetrate even a perfect superconducting surface and ruin the performance. We present intuitive arguments and simple estimates for ${H}_{\mathrm{sh}}$, and combine them with our previous rigorous calculations, which we summarize. We briefly discuss experimental measurements of the superheating field, comparing to our estimates. We explore the effects of materials anisotropy and the danger of disorder...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
We use a model of vortex dynamics and collective weak-pinning theory to study the residual dissipati...
The Q-factor of superconducting accelerating cavities can be substantially improved by a special hea...
Superconducting niobium accelerating cavities are devices operating in radiofrequency and able to ac...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
Bulk niobium is the most common material used in the fabrication of rf superconducting cavities for ...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
For these ten years, the high gradient of niobium superconducting RF (SRF) cavities seems to be satu...
It is shown that a multilayer comprised of alternating thin superconducting and insulating layers on...
Nb3 Sn has the potential to significantly improve cryogenic efficiency and maximum fields in superco...
Superconducting radio-frequency (rf) cavities made of high-purity niobium exhibit strong anomalous r...
One of the dominant causes of the large gradient spread and gradient limits in superconducting cavit...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...
Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of partic...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
We use a model of vortex dynamics and collective weak-pinning theory to study the residual dissipati...
The Q-factor of superconducting accelerating cavities can be substantially improved by a special hea...
Superconducting niobium accelerating cavities are devices operating in radiofrequency and able to ac...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
Bulk niobium is the most common material used in the fabrication of rf superconducting cavities for ...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
Accelerating cavities are devices resonating in the radio-frequency (RF) range used to accelerate ch...
For these ten years, the high gradient of niobium superconducting RF (SRF) cavities seems to be satu...
It is shown that a multilayer comprised of alternating thin superconducting and insulating layers on...
Nb3 Sn has the potential to significantly improve cryogenic efficiency and maximum fields in superco...
Superconducting radio-frequency (rf) cavities made of high-purity niobium exhibit strong anomalous r...
One of the dominant causes of the large gradient spread and gradient limits in superconducting cavit...
Superconducting Radio-Frequency cavities are currently made out of niobium. Niobium cavities are lim...
Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of partic...
Performances of superconducting accelerating (SRF) cavities made of bulk niobium typically degrade a...
We use a model of vortex dynamics and collective weak-pinning theory to study the residual dissipati...
The Q-factor of superconducting accelerating cavities can be substantially improved by a special hea...