Nova Patents
EP0280282A2

Magnetometer using a josephson device.

Abstract

A SQUID for detecting a weak magnetic field is constructed of a sensor coil (104) which detects a signal magnetic flux, and a superconducting loop (103) which is magnetically coupled with the sensor coil (104) to generate a periodic voltage corresponding to an interlinking magnetic flux from the sensor coil (104). The periodic voltage from the SQUID is amplified, and is taken out. The periodic voltage taken out is synchronously detected by a phase-sensitive detecting amplifier (109). The synchronously-detected signal is converted into a light signal, which is fed back to the SQUID (103, 104). The light signal fed back is converted into an electric signal by a superconducting phototransistor (106) which is arranged in a cryogenic atmosphere (101). A magnetic flux corresponding to the electric signal from the superconducting phototransistor (106) is fed back to the superconducting loop (103) by a feedback coil.

EP0280282A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 24 February 2008, 18.6 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

7 claims: 3 independent, 4 dependent

  1. 1
    A magnetometer using a Josephson device, comprising:a sensor coil (104) which detects a signal magnetic flux;a superconducting loop (103) which is magnetically coupled with said sensor coil (104), to generate a periodic voltage corresponding to the interlinking magnetic flux from said sensor coil (104), and which is formed of an inductor and at least one Josephson junction;first amplifier means (107) to amplify the periodic volt­age from said superconducting loop (103);synchronously-detecting amplifier means (109) to amplify a predetermined frequency component of the periodic voltage amplified by the first amplifier means (107);first electrooptic conversion means (110) to convert the signal amplified by said synchronously-detecting amplifier means (109), into a light signal;first light transmission means (108) to transmit the light signal from said first electrooptic conversion means (110);a superconducting phototransistor (106) which receives the light signal from said first light transmission means (108) and converts it into an electric signal;and       a feedback coil (105) which interlinks a magnetic flux corresponding to the electric signal from said superconducting phototransistor (106), with said superconducting loop (103);said sensor coil (104), said superconducting loop (103) and said superconducting phototransistor (106) which are made with niobium or high-critical temperature oxide supercon­ ductor, being arranged in a cryogenic atmosphere (101).
  2. 4
    A magnetometer using a Josephson device, comprising:a sensor coil (104) which detects a signal magnetic flux;a superconducting loop (103) which is magnetically coupled with said sensor coil (104), to generate a periodic voltage corresponding to the interlinking magnetic flux from said sensor coil (104), and which is formed of an inductor and at least one Josephson junction;means to amplify (107) the periodic voltage from said superconducting loop (103);electrooptic conversion means (110ʹ) to convert the peri­odic voltage amplified by the amplification means (107), into a light signal;synchronous detection means to subject the light signal, per se, from said electrooptic conversion means (110ʹ), to synchronous detection in accordance with a predetermined fre­quency;second light transmission means (108) to transmit the light signal from said synchronous detection means;a superconducting phototransistor (106) which receives the light signal from said second light transmission means (108) and converts it into an electric signal;and       a feedback coil (105) which interlinks a magnetic flux corresponding to the electric signal from said superconducting phototransistor (106), with said superconducting loop (103);said sensor coil (104), said superconducting loop (103) and said superconducting phototransistor (106) being arranged in a cryogenic atmosphere (101). (Fig. 7)
  3. 6
    A magnetometer using a Josephson device according to any of claims 1 to 5, wherein said superconducting loop (103) is formed of the inductor and two Josephson junctions and is biased to a fixed current through a power distribution resist­or (123) arranged in the cryogenic atmosphere (101).