Superconducting magnet device and cryostat
A superconducting magnet device includes a superconducting coil disposed in a cryogenic environment; and a protection diode disposed in the cryogenic environment and connected to the superconducting coil, the protection diode being disposed such that a direction of a magnetic field generated by the superconducting coil on a pn junction surface of the protection diode forms an angle within about 30 degrees with respect to a normal line of the pn junction surface.
1 . A superconducting magnet device comprising:
a superconducting coil disposed in a cryogenic environment; and
a protection diode disposed in the cryogenic environment and connected to the superconducting coil, the protection diode being disposed such that a direction of a magnetic field generated by the superconducting coil on a pn junction surface of the protection diode forms an angle within about 30 degrees with respect to a normal line of the pn junction surface.
2 . The superconducting magnet device according to claim 1 ,
wherein the protection diode is disposed such that the direction of the magnetic field generated by the superconducting coil on the pn junction surface is substantially parallel to the normal line of the pn junction surface.
3 . The superconducting magnet device according to claim 1 ,
wherein the protection diode is disposed inside the superconducting coil.
4 . The superconducting magnet device according to claim 1 ,
wherein the superconducting magnet device includes a plurality of the superconducting coils disposed in the cryogenic environment, and
the protection diode is disposed outside the plurality of superconducting coils such that a direction of a combined magnetic field generated by the plurality of superconducting coils on the pn junction surface forms an angle within about 30 degrees with respect to the normal line of the pn junction surface.
5 . A cryostat comprising:
a vacuum container;
a cryocooler installed in the vacuum container;
a superconducting coil disposed in the vacuum container and cooled by the cryocooler; and
a protection diode disposed in the vacuum container, cooled by the cryocooler, and connected to the superconducting coil, the protection diode being disposed such that a direction of a magnetic field generated by the superconducting coil on a pn junction surface of the protection diode forms an angle within about 30 degrees with respect to a normal line of the pn junction surface.