Arrangement for coupling an rf-SQUID circuit to a super conducting tank circuit
First Claim
1. An arrangement for coupling an rf-SQUID to a superconducting tank circuit and to a base plate, in which the tank circuit and the rf-SQUID form a coplanar structure and the tank circuit has a slit, characterized in that the base plate is configured as an outer loop (10a) coplanar to the rf-SQUID (2) and to the tank circuit (1) and has a slit (11), and that the tank circuit (1) comprises an inner loop (1a) in which the slit (4) is embodied, and that the orientation of the slits (4, 11) of the inner loop (1a) and the outer loop (10a) relative to one another determines the resonance frequency fr.
2 Assignments
0 Petitions
Accused Products
Abstract
In an arrangement for coupling an rf-SQUID to a superconducting tank circuit and to a base plate, in which the tank circuit and the rf-SQUID form a coplanar structure and the tank circuit has a slit, the base plate (10) is configured as an outer loop (10a) coplanar to the rf-SQUID (2) and the tank circuit (1) and has a slit (11), and the tank circuit (1) comprises an inner loop (1a) in which the slit (4) is embodied, whereby the orientation of the slits (4, 11) of the inner loop (1a) and the outer loop (10a) relative to one another determines the resonance frequency fr.
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Citations
17 Claims
- 1. An arrangement for coupling an rf-SQUID to a superconducting tank circuit and to a base plate, in which the tank circuit and the rf-SQUID form a coplanar structure and the tank circuit has a slit, characterized in that the base plate is configured as an outer loop (10a) coplanar to the rf-SQUID (2) and to the tank circuit (1) and has a slit (11), and that the tank circuit (1) comprises an inner loop (1a) in which the slit (4) is embodied, and that the orientation of the slits (4, 11) of the inner loop (1a) and the outer loop (10a) relative to one another determines the resonance frequency fr.
Specification