A water-cooled poly Bitter magnet for a new compact hybrid magnet was designed under the fully utilization of the electric power source of 8 MW and the cooling systems installed in the High Field Laboratory for Superconducting Materials, Tohoku University. Supposing copper-silver plates with high yield strength are used, a poly Bitter magnet can be designed. The magnet consists of four axial water-cooled Bitter coils which are electrically connected in series and all of cooling water flows from the bottom tc upper side of coils. The designed poly Bitter magnet will produce 24 T in the room temperature bore of 14 mm and can provide 40 T as a hybrid magnet with backup field of 16 T by the combined superconducting magne
The goal of the common coil magnet R&D program at Brookhaven National Laboratory (BNL) is to dev...
We present a modified Bitter-type electromagnet which features high magnetic field, fine electronic ...
We present a modified Bitter-type electromagnet which features high magnetic field, fine electronic ...
A hybrid magnet is a combined system of an outer superconducting magnet and an inner high-power wate...
Design, fabrication and operating results of water-cooled magnets at High Field Laboratory for Super...
Water-cooled magnets for Tohoku Hybrid Magnets, HM-3, HM-2 and HM-1, consist of a single Bitter coil...
High-power water-cooled magnets have been installed in our laboratory to produce high magnetic field...
Le projet décrit comprend la réalisation de trois aimants hybrides. L'aimant le plus petit actuellem...
A 16 T outer superconducting magnet for a 40 T compact hybrid magnet is investigated. A highly stren...
Design, construction and performance of three superconducting magnets for the hybrid magnets install...
A Bitter magnet with concentric double coils is more efficient than a single-coil magnet especially ...
Abstract—To carry out long-term experiments requiring a large bore and a constant high magnetic fiel...
To capture pions the Neutrino Factory and Muon Collider Collaboration needs a field of {approx}20 T ...
New high field superconducting magnets have been studied as the research and development for the nex...
Cette communication décrit la conception et la construction d'un système aimant hybride alimenté par...
The goal of the common coil magnet R&D program at Brookhaven National Laboratory (BNL) is to dev...
We present a modified Bitter-type electromagnet which features high magnetic field, fine electronic ...
We present a modified Bitter-type electromagnet which features high magnetic field, fine electronic ...
A hybrid magnet is a combined system of an outer superconducting magnet and an inner high-power wate...
Design, fabrication and operating results of water-cooled magnets at High Field Laboratory for Super...
Water-cooled magnets for Tohoku Hybrid Magnets, HM-3, HM-2 and HM-1, consist of a single Bitter coil...
High-power water-cooled magnets have been installed in our laboratory to produce high magnetic field...
Le projet décrit comprend la réalisation de trois aimants hybrides. L'aimant le plus petit actuellem...
A 16 T outer superconducting magnet for a 40 T compact hybrid magnet is investigated. A highly stren...
Design, construction and performance of three superconducting magnets for the hybrid magnets install...
A Bitter magnet with concentric double coils is more efficient than a single-coil magnet especially ...
Abstract—To carry out long-term experiments requiring a large bore and a constant high magnetic fiel...
To capture pions the Neutrino Factory and Muon Collider Collaboration needs a field of {approx}20 T ...
New high field superconducting magnets have been studied as the research and development for the nex...
Cette communication décrit la conception et la construction d'un système aimant hybride alimenté par...
The goal of the common coil magnet R&D program at Brookhaven National Laboratory (BNL) is to dev...
We present a modified Bitter-type electromagnet which features high magnetic field, fine electronic ...
We present a modified Bitter-type electromagnet which features high magnetic field, fine electronic ...