Claims
- 1. A horn antenna comprising:
- a) an antenna body having a plurality of regions coaxially aligned along a longitudinal body axis and including a first region having a forward aperture which tapers inward to a cylindrical region and from an inner end of which cylindrical region a second region tapers inward to an aft aperture; and
- b) dielectric means for focusing electromagnetic radiation to the longitudinal body axis and including (1) a first section mounted in the first region and a second section mounted aft of the first region wherein a dielectric constant of the first section is greater than a dielectric constant of the second section, and (2) dielectric interface means for interfacing with at least one of said first and second sections having a third dielectric constant between the first and second dielectric constants and a thickness which progressively increases with increasing radial distance from the longitudinal body axis.
- 2. Apparatus as set forth in claim 1 wherein the first, second and third dielectric constants are in the range of 1.15 to 2.55.
- 3. Apparatus as set forth in claim 1 wherein said dielectric means is constructed from a material selected from a class consisting of polymers, co-polymers, or foams of polyethylene or polystyrene.
- 4. Apparatus as set forth in claim 1 wherein the aft surface of said first section is hyperboloidal.
- 5. Apparatus as set forth in claim 1 wherein said first and second sections are separated by an air gap.
- 6. Apparatus as set forth in claim 1 including a third dielectric section mounted between said first and second sections and wherein the first, second and third sections and dielectric interface means substantially fill the interior of the antenna body.
- 7. Apparatus as set forth in claim 1 wherein an axial external surface of said second section coaxial with said longitudinal body axis is conical and wherein the second section mounts within the second region and extends into the cylindrical region and an air gap is defined between the antenna body and the second section.
- 8. Apparatus as set forth in claim 6 wherein said dielectric interface means interfaces with an aft hyperboloidal surface of the first section.
- 9. Apparatus as set forth in claim 1 wherein the dielectric interface means comprises a plurality of layers of dielectric material, wherein individual ones of the plurality of dielectric layers couple with selected forward and aft surfaces of said first and second sections and wherein at least one of the plurality of layers has a thickness which increases with increasing radial distance form the longitudinal body axis and a maximum thickness which is less than one wavelength of the radiation.
- 10. Apparatus as set forth in claim 9 wherein one of said dielectric layers mates with a forward planar surface of said first section and including weatherproof seal means secured to the forward aperture for sealing the antenna interior from the surrounding environment.
- 11. Apparatus as set forth in claim 1 wherein said second section is constructed of a material having a dielectric constant in the range of 1.15 to 1.40 and said first section is constructed of a material having a dielectric constant in the range of 2.0 to 2.55.
- 12. Apparatus as set forth in claim 1 including a cover transparent to impinging radiation and secured in weatherproof relation to the forward aperture.
- 13. Apparatus as set forth in claim 1 wherein an aft surface of the first section is hyperboloidal and a forward surface is planar.
- 14. Apparatus as set forth in claim 1 wherein at least one of said first and second sections is formed of a foamed material including a plurality of randomly dispersed electrically conductive particles.
- 15. Apparatus as set forth in claim 14 wherein said particles comprise metal coated particles of foam.
- 16. Apparatus for a horn antenna having a forward aperture and an aft aperture disposed along a longitudinal body axis comprising:
- a) dielectric means supported in coaxial relation to the antenna body for focusing electromagnetic radiation to the longitudinal body axis and including first and second sections made from respective first and second dielectric materials and disposed along a longitudinal dielectric axis, wherein said second section is positioned aft of said first section and a dielectric constant of said first section is greater than a dielectric constant of said second section; and
- b) a plurality of dielectric layers each having a dielectric constant determined in a range between said first and second dielectric constants, wherein individual ones of the plurality of dielectric layers couple with selected forward and an aft surfaces of said first and second sections and wherein the thickness of at least one of said layers increases with increasing radial distance from the longitudinal dielectric axis.
- 17. Apparatus as set forth in claim 16 wherein at least one of said first and second sections includes a plurality of randomly dispersed and electrically conductive particles.
- 18. Apparatus as set forth in claim 16 including a third dielectric section mounted between the first and second sections and any intervening dielectric layer, wherein the first, second and third sections and plurality of dielectric layers substantially fill the interior of the antenna body, and wherein the aft surface of said first section presents a hyperboloidal surface.
- 19. Apparatus as set forth in claim 18 wherein a forward surface of said first section is planar.
- 20. Antenna apparatus comprising dielectric means for focusing electromagnetic radiation and hybrid modes thereof produced within electrically conductive interior walls of an antenna body toward an aft aperture including (1) first and second sections made from respective first and second dielectric materials having first and second dielectric constants, wherein the dielectric constant of the first section is greater than the dielectric constant of the second section, and (2) dielectric interface means for interfacing with at least one of the first and second sections having a third dielectric constant and a thickness which progressively increase with increasing radial distance from a longitudinal body axis; and wherein said antenna body comprises a first region having a forward aperture which conically tapers inward to a cylindrical region and from an inner end of which cylindrical region a second region conically tapers inward to the aft aperture, wherein each of the first, second and cylindrical regions are co-axial with the longitudinal body axis, wherein the first region exhibits a flare angle greater than a flare angle of the second region and wherein the first dielectric section mounts within the first region and the second dielectric section mounts aft of the first section and extends from the second region.
- 21. Apparatus as set forth in claim 20 including an air gap between the second dielectric section and the antenna body.
- 22. Antenna apparatus comprising dielectric means for focusing electromagnetic radiation and hybrid modes thereof produced within electrically conductive interior walls of an antenna body toward an aft aperture including (1) first and second sections made from respective first and second dielectric materials having first and second dielectric constants, wherein the dielectric constant of the first section is greater than the dielectric constant of the second section, and (2) dielectric interface means for interfacing with at least one of the first and second sections having a third dielectric constant and a thickness which progressively increases with increasing radial distance from a longitudinal body axis; and wherein said antenna body comprises a first region having a forward aperture which conically tapers inward to a cylindrical region and from an inner end of which cylindrical region a second region conically tapers inward to the aft aperture, wherein each of the first, second and cylindrical regions are co-axial with the longitudinal body axis, wherein the first region exhibits a flare angle greater than a flare angle of the second region and wherein the first dielectric section mounts within the first region and the second dielectric section mounts aft of the first section and extends from the second region and further including a cover transparent to impinging radiation secured to the forward aperture.
CROSS REFERENCE TO RELATED U.S. APPLICATION DATA
This is a continuation-in-part of application Ser. No. 295,805, filed Jan. 11, 1989, U.S. Pat. No. 5,117240 which is a continuation-in-part of application Ser. No. 142,230, filed Jan. 11, 1988, abandoned.
US Referenced Citations (7)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0130548 |
Dec 1948 |
AUX |
0903474 |
Aug 1949 |
DEX |
1904130 |
Jul 1970 |
DEX |
0068542 |
Jun 1978 |
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Non-Patent Literature Citations (2)
Entry |
Berberich et al. The Dielectric Properties of Rutile Form of TiO.sub.2 Journal of Applied Physics, vol. 11, Oct. 1940, pp. 681-692. |
Radiation Behaviour of a Dielectric Loaded Double-Flare Multimode Conical Horn with a Homogeneous Dielectric Sphere in Front of its Aperture. Montech, 86, IEEE Conferences, 4 pages, 1986. |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
295805 |
Jan 1989 |
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Parent |
142230 |
Jan 1988 |
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