Device for reducing the heating of a vacuum chamber
The device has a set of superconducting strips (3, 3') arranged between a charged particle beam (1) and a superconducting magnet (2), where the superconducting strips are arranged parallel to each other in a row. Thickness of the superconducting strips is about 100 nanometer to 1 micrometer. An...
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creator | BERNHARD, AXEL PEIFFER, PETER ROSSMANITH, ROBERT WOLLMANN, DANIEL |
description | The device has a set of superconducting strips (3, 3') arranged between a charged particle beam (1) and a superconducting magnet (2), where the superconducting strips are arranged parallel to each other in a row. Thickness of the superconducting strips is about 100 nanometer to 1 micrometer. An insulating support is arranged between the charged particle beam and the superconducting magnet, where thickness of the insulating support is about 10 micrometer to 1000 micrometer. A magnetic field is emanated from the superconducting magnet. An independent claim is also included for a vacuum chamber comprising a device for reducing heating of the vacuum chamber. |
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Thickness of the superconducting strips is about 100 nanometer to 1 micrometer. An insulating support is arranged between the charged particle beam and the superconducting magnet, where thickness of the insulating support is about 10 micrometer to 1000 micrometer. A magnetic field is emanated from the superconducting magnet. 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subjects | BASIC ELECTRIC ELEMENTS ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR ELECTRICITY INDUCTANCES MAGNETS PLASMA TECHNIQUE PRODUCTION OF ACCELERATED ELECTRICALLY-CHARGED PARTICLES OR OFNEUTRONS PRODUCTION OR ACCELERATION OF NEUTRAL MOLECULAR OR ATOMICBEAMS SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES TRANSFORMERS |
title | Device for reducing the heating of a vacuum chamber |
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