Squid with coil inductively coupled to squid via mutual inductance
A technology of inductive coupling and coil, applied in the field of DC superconducting quantum interferometer, can solve the problems of reduced voltage swing, high input capacitance and low channel resistance FET, etc.
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[0037] The equivalent circuit of the SBC is shown in Figure 4: dc-SQUID 2 passes through an ideal current source ( Figure 4a ) or voltage source ( Figure 4b )1 bias. In current bias mode, the current 3 through the series connected SQUID 2 and the feedback coil 4 is constant, but the voltage across the SQUID 2 is adjusted as the external magnetic field varies. In voltage bias mode, the SQUID 2 is biased by a constant voltage and the current 3 is modulated by an external magnetic field. Feedback coil 4 is inductively coupled to SQUID 2 via mutual inductance 5 so that additional flux occurs in the SQUID loop. The arrangement order of SQUID 2 and feedback coil 4 can be exchanged.
[0038] The new component SBC has the following special characteristics:
[0039] In current bias and voltage bias modes, the voltage (current)-flux curve (eg Figure 5a shown) and the current-voltage curves become asymmetrical. Taking the voltage bias mode as an example, the SQUID-loop Ф LOOP T...
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