Claims
- 1. An optical system, comprising:a window; an optical corrector comprising a curved piece of a transparent material having a front surface and a back surface, at least one of the front surface and the back surface having a torus shape defined in Cartesian coordinates by the relation Z(x,y)=Zprev(x,y)+Lx(x,y)+Ly(y), whereinZprev(x,y)=cAρ2/[1+(1−(kA+1)cA2ρ2)½]+dAρ4+eAρ6+fAρ8+gAρ10, ρ2=x2+y2, Ly(y)=C1y2/[1+(1−(C2+1)C12y2)½]+C3y4+C4y6+C5y8+C6y10+C7y12+C8y14, Lx(x,y)=Cxx2/[1+(1−(kx+1)Cx2x2)½]+C13x4+C14x6+C15x8+C16x10+C17x12+C18x14, Cx=C11+C21y+C31y2, andkxC12+C22y +C32y2, andwherein cA, kA, dA, eA, fA, gA, C1-C8, C11-C18, C21-C22, and C31-C32 are constants; anda sensor system comprising a sensor positioned such that the optical corrector is between the window and the sensor.
- 2. The optical system of claim 1, wherein the window has an outer surface in a shape of a first generalized conic, and an inner surface in a shape of a second generalized conic.
- 3. The optical system of claim 1, wherein the window has a fineness ratio of greater than about 0.5.
- 4. The optical system of claim 1, wherein the sensor is sensitive to ultraviolet energy.
- 5. The optical system of claim 1, wherein the sensor is sensitive to visible light.
- 6. The optical system of claim 1, wherein the sensor is sensitive to infrared energy.
- 7. The optical system of claim 1, wherein the sensor system includes a telescope.
- 8. The optical system of claim 7, wherein the telescope has a telescope bias aberration to compensate the bias aberration of the optical corrector and of the window.
- 9. The optical system of claim 1, wherein the optical corrector has a curved strip shape.
- 10. The optical system of claim 1, wherein the optical corrector is mounted on a roll gimbal.
- 11. The optical system of claim 1, wherein the sensor system includes a telescope that is mounted on a gimbal.
- 12. The optical system of claim 1, further including a body of an aircraft to which the window, the optical corrector, and the sensor system are attached.
- 13. An optical system, comprising:a window having a fineness ratio of greater than about 1.0; an optical corrector comprising a curved piece of a transparent material having a front surface and a back surface, at least one of the front surface and the back surface having a torus shape defined in Cartesian coordinates by the relation Z(x,y)=Zprev(x,y)+Lx(x,y)+Ly(y), whereinZprev(x,y)=cAρ2/[1+(1−(kA+1)cA2ρ2)½]+dAρ4+eAρ6+fAρ8+gAρ10, p2=x2+y2, Ly(y)=C1y2/[1+(1−(C2+1)C12y2)½]+C3y4+C4y6+C5y8+C6y10+C7y12+C8y4, Lx(x,y)=Cxx2/[1+(1−(kx+1)Cx2x2)½]+C13x4+C14x6+C15x8+C16x10+C17x12+C18x14, Cx=C11+C21y+C31y2, andkx=C12+C22y +C32y2, andwherein cA, kA, dA, eA, fA, gA, C1-C8, C11-C18, C21-C22, and C31-C32 are constants, and wherein the optical corrector has the shape of a curved strip;a roll gimbal upon which the optical corrector is supported; and a sensor system comprising a sensor positioned such that the optical corrector is between the window and the sensor.
- 14. The optical system of claim 13, wherein the window hasan outer surface in a shape of a first generalized conic, and an inner surface in a shape of a second generalized conic.
- 15. The optical system of claim 13, wherein the sensor system includes a telescope that is mounted on a gimbal.
- 16. An optical system, comprising:a window; an optical corrector comprising a curved piece of a transparent material having a front surface and a back surface, at least one of the front surface and the back surface having a shape which is a segment of a torus shape; and a sensor system comprising a sensor positioned such that the optical corrector is between the window and the sensor.
- 17. The optical system of claim 16, wherein the optical corrector has a curved strip shape.
- 18. The optical system of claim 16, wherein the optical corrector is mounted on a roll gimbal.
- 19. The optical system of claim 16, further includinga body of an aircraft to which the window, the optical corrector, and the sensor system are attached.
- 20. The optical system of claim 1, wherein the sensor system includes a telescope.
Government Interests
This invention was made with Government support under Contract No. MDA972-96-C-0800 awarded by the Government. The Government has certain rights in this invention.
US Referenced Citations (9)