Claims
- 1. A magnetometor sensor comprising, in combination:
- (a) an enclosed cell containing He.sup.3 therein for receiving light from a light source;
- (b) a light source capable of emitting light at the absorption wavelength of He.sup.3 atoms directing such light to said cell along a predetermined path;
- (c) a single pick-up coil containing therein said light source and said enclosed cell magnetically coupled to said enclosed cell; and
- (d) a solenoid providing a magnetic field along the axis thereof and containing said cell therein.
- 2. A sensor as set forth in claim 1 wherein said light source is a source of circularly polarized light.
- 3. A sensor as set forth in claim 2 wherein said source of circularly polarized light comprises a He.sup.4 cell and an optical system and a circular polarizer disposed serially between said He.sup.4 cell and said enclosed cell containing He.sup.3.
- 4. A sensor as set forth in claim 1 wherein said predetermined path of said light source, said enclosed cell and said pick-up coil are disposed along the axis of said solenoid.
- 5. A sensor as set forth in claim 2 wherein said predetermined path of said light source, said enclosed cell and said pick-up coil are disposed along the axis of said solenoid.
- 6. A sensor as set forth in claim 3 wherein said predetermined path of said light source, said enclosed cell and said pick-up coil are disposed along the axis of said solenoid.
- 7. A sensor as set forth in claim 1 wherein said light source is a laser.
- 8. A magnetometer comprising, in combination:
- (a) an enclosed cell containing He.sup.3 therein for receiving light from a light source;
- (b) a light source capable of emitting light at the absorption wavelength of He.sup.3 atoms directing such light to said cell along a predetermined path;
- (c) a single pick-up coil containing therein said light source and said enclosed cell magnetically coupled to said enclosed cell;
- (d) a solenoid providing a magnetic field along the axis thereof and containing said cell therein; and
- (e) data collection means coupled to said pick-up coil.
- 9. A method of measuring a magnetic field comprising the steps of:
- (a) providing a solenoid having an axis and disposed in an ambient magnetic field;
- (b) producing a magnetic field along said axis of said solenoid of predetermined magnitude slightly in excess of said ambient magnetic field;
- (c) providing an enclosed cell containing He.sup.3 therein and disposed within said solenoid and in said produced magnetic field;
- (d) exciting said He.sup.3 to the 2.sup.3 S.sub.1 metastable state;
- (e) causing said He.sup.3 excited to the 2.sup.3 S.sub.1 metastable state to transfer to a higher atomic level for a predetermined time;
- (f) causing said magnetic field to shift; and
- (g) providing a coil apart from said solenoid magnetically coupled to said cell to sense said shift in said magnetic field.
- 10. The method of claim 9 wherein step (d) is provided by emitting light at the absorption wavelength of He.sup.3 atoms and directing such light to said cell along a predetermined path.
- 11. The method of claim 9 wherein the step (e) is provided by applying a high frequency voltage across the interior of said cell.
- 12. The method of claim 10 wherein step (e) is provided by applying a high frequency voltage across the interior of said cell.
- 13. The method of claim 12 further including the step of removing said high frequency voltage and said light prior to step (f) for a predetermined time.
- 14. The method of claim 10 further including the step of removing said light prior to step (f).
Parent Case Info
This application is a continuation of application Ser. No. 569,875, filed Aug. 17, 1990, and now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4390494 |
Salisbury |
Jun 1983 |
|
5036278 |
Slocum |
Jul 1991 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
569875 |
Aug 1990 |
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