The beam heat load is an important input parameter needed for the cryogenic design of superconducting insertion devices. Theoretical models taking into account the different heating mechanisms of an electron beam to a cold bore predict smaller values than the ones measured with several superconducting insertion devices installed in different electron storage rings. In order to measure and possibly understand the beam heat load to a cold bore, a cold vacuum chamber for diagnostics (COLDDIAG) has been built. COLDDIAG is equipped with temperature sensors, pressure gauges, mass spectrometers as well as retarding field analyzers which allow to measure the beam heat load, total pressure, and gas content as well as the flux of particles hitting th...
The COLDDIAG (cold vacuum chamber for beam heat load diagnostics) developed at Karlsruhe Institute o...
The beam heat load and the pressure in the vacuum chamber of the cold bore superconducting undulator...
The beam heat load and the pressure in the vacuum chamber of the cold bore superconducting undulator...
The beam heat load is an important input parameter needed for the cryogenic design of superconductin...
For a proper design of the cryogenic layout of superconducting insertion devices it is necessary to ...
The knowledge of the heat intake from the electron beam is essential to design the cryogenic layout ...
One of the still open issues for the development of superconducting insertion devices is the underst...
For a proper design of the cryogenic layout of superconducting insertion devices it is necessary to ...
One of the still open issues for the development of superconductive insertion devices is the underst...
One of the still open issues for the development of superconducting insertion devices is the underst...
Superconductive insertion devices can reach, for the same gap and period length, higher fields with ...
One of the still open issues for the development of superconducting insertion devices is the underst...
Superconducting insertion devices (IDs) have higher fields for a given gap and period length compare...
The heat intake from the beam which is crucial for the cryogenic design of superconducting insertion...
The beam heat load is a crucial input parameter for the cryogenic design of superconducting insertio...
The COLDDIAG (cold vacuum chamber for beam heat load diagnostics) developed at Karlsruhe Institute o...
The beam heat load and the pressure in the vacuum chamber of the cold bore superconducting undulator...
The beam heat load and the pressure in the vacuum chamber of the cold bore superconducting undulator...
The beam heat load is an important input parameter needed for the cryogenic design of superconductin...
For a proper design of the cryogenic layout of superconducting insertion devices it is necessary to ...
The knowledge of the heat intake from the electron beam is essential to design the cryogenic layout ...
One of the still open issues for the development of superconducting insertion devices is the underst...
For a proper design of the cryogenic layout of superconducting insertion devices it is necessary to ...
One of the still open issues for the development of superconductive insertion devices is the underst...
One of the still open issues for the development of superconducting insertion devices is the underst...
Superconductive insertion devices can reach, for the same gap and period length, higher fields with ...
One of the still open issues for the development of superconducting insertion devices is the underst...
Superconducting insertion devices (IDs) have higher fields for a given gap and period length compare...
The heat intake from the beam which is crucial for the cryogenic design of superconducting insertion...
The beam heat load is a crucial input parameter for the cryogenic design of superconducting insertio...
The COLDDIAG (cold vacuum chamber for beam heat load diagnostics) developed at Karlsruhe Institute o...
The beam heat load and the pressure in the vacuum chamber of the cold bore superconducting undulator...
The beam heat load and the pressure in the vacuum chamber of the cold bore superconducting undulator...