Claims
- 1. A passively shimmed, toroidal cavity NMR principal detector element comprising:an electrically conductive rod having first and second opposed ends; first and second electrically conductive hemispherical structures each having a respective flat end portion attached to the first and second opposed ends of said rod, respectively; first and second electrical conductors respectively attached to rounded portions of said first and second hemispherical structures; and a cylindrical sleeve disposed around and contacting said first and second hemispherical structures forming an enclosed toroidal volume between the flat end portions of the hemispherical structures and an outer surface of the rod, and extending beyond both hemispherical structures by a dimension approximately equal to a diameter of the hemispherical structures or a length of the rod.
- 2. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures are comprised of a solid metallic conductor.
- 3. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures are comprised of a hollow metallic conductor.
- 4. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures are comprised of a hollow metallic conductor that is filled with a material of a selected magnetic susceptibility.
- 5. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures are comprised of a hollow metallic conductor filled with a mixture of materials of selected magnetic susceptibilities.
- 6. A NMR principal detector element as recited in claim 1 wherein at least one of said hemispherical structures is comprised of concentric stacked disks of materials of selected magnetic susceptibilities.
- 7. A NMR principal detector element as recited in claim 1 wherein at least one of said hemispherical structures is comprised of an assembly of concentric stacked disks of materials of selected magnetic susceptibilities and electrical conductivities.
- 8. A NMR principal detector element as recited in claim 1 wherein at least one of said hemispherical structures is comprised of an assembly of solid hemispheres made of materials of selected magnetic susceptibilities and electrical conductivities.
- 9. A NMR principal detector element as recited in claim 1 wherein at least one of said hemispherical structures is comprised of a single solid body of selected magnetic susceptibilities and electrical conductivities and includes a concentric aperture for receiving an end of said rod.
- 10. A NMR principal detector element as recited in claim 1 wherein at least one of said hemispherical structures is comprised of concentric stacked washers having selected magnetic susceptibilities and electrical conductivities.
- 11. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures are hollow.
- 12. A NMR principal detector element as recited in claim 11 wherein said hollow rod and hemispherical structures are filled with materials of selected magnetic susceptibilities and electrical conductivities.
- 13. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures are coated or plated with materials of selected magnetic susceptibilities and electrical conductivities.
- 14. A NMR principal detector element as recited in claim 1 wherein said rod and hemispherical structures have highly polished surfaces.
- 15. A passively shimmed, toroidal cavity NMR detector which detects NMR spectra of a sample of a gas fluid, liquid, semisolid, solid, or mixtures thereof contained in a sample volume in the shape of a toroid that is bounded by flat ends of first and second hemispherical structures, an exterior surface of a rod, and an interior surface of a containment sleeve.
- 16. A cylindrical containment sleeve covering a passively shimmed, toroidal cavity NMR detector which contains a sample in a toroidal volume bounded by flat ends of first and second hemispherical structures, an exterior surface of a rod, and an interior surface of said cylindrical containment sleeve.
- 17. A cylindrical sleeve comprised of a hard and a flexible material covering a passively shimmed, toroidal cavity NMR detector containing a sample in a toroidal volume bounded by flat ends of first and second hemispherical structures, an exterior surface of a rod, and an interior surface of said cylindrical sleeve.
- 18. A cylindrical sleeve comprised of conductive exterior materials and non conductive and flexible interior materials covering a passively shimmed, toroidal cavity NMR detector containing a sample in a toroidal volume bounded by flat ends of first and second hemispherical structures, an exterior surface of a rod, and an interior surface of said cylindrical sleeve, which provides a conductive surface for RF currents on an exterior surface of said sleeve so as not to make electrical contact with the NMR detector disposed within said cylindrical sleeve.
- 19. A cylindrical sleeve covering a passively shimmed, toroidal cavity NMR detector comprised of conductive exterior materials forming a conductive path for RF currents, and flexible interior materials containing a sample in a toroidal volume bounded by flat ends of first and second hemispherical structures, an exterior surface of a rod, and an interior surface of said cylindrical sleeve, wherein said cylindrical sleeve provides a conductive surface for the RF currents on an exterior surface of said sleeve so as not to make electrical contact with the NMR detector contained within said sleeve, and further comprising first conductive films on an interior of said cylindrical sleeve in contact with said hemispherical structures, and second conductive films on an exterior of said sleeve, with said first and second conductive films forming a capacitor between the exterior and interior surfaces of said cylindrical sleeve.
- 20. A cylindrical sleeve having interior and exterior metallic surfaces and covering a passively shimmed, toroidal cavity NMR detector comprised of exterior materials forming a conductive path for RF currents, and flexible interior materials containing a sample in a toroidal volume bounded by flat ends of first and second hemispherical structures, an exterior surface of a rod, and an interior surface of said cylindrical sleeve, wherein said cylindrical sleeve provides a conductive surface for the RF currents on an exterior surface of said sleeve so as not to make electrical contact with the NMR detector disposed within said sleeve, and further comprising first conductive films on the interior of said cylindrical sleeve that do not contact the hemispherical structures, or comprising second conductive films on the exterior of said sleeve, with said first or second conductive films forming a capacitor between said rod and the interior or exterior metallic surface of said cylindrical sleeve, respectively.
RELATED APPLICATION
This application claims the benefit of the filing date of U.S. Provisional Application No. 60/363,447 filed on Mar. 12, 2002 now abandoned.
CONTRACTUAL ORIGIN OF THE INVENTION
The United States Government has rights in this invention pursuant to Contract No. W-31-109-ENG-38 between the United States Government and Argonne National Laboratory.
US Referenced Citations (8)
Provisional Applications (1)
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Number |
Date |
Country |
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60/363447 |
Mar 2002 |
US |