Claims
- 1. A method for constructing a lens structure, the method comprising:
producing a mold so as to define a pliant lens cavity in which a lens portion of the lens structure is to be formed, the pliant lens cavity having an orifice having a transverse dimension less than a transverse dimension of the lens cavity for the lens portion; casting a moldable material, from which at least the lens portion is to be formed, into at least the lens cavity; permitting the moldable material to set thereby to form the lens portion of the solid immersion lens structure; and removing the lens portion of the lens structure from the pliant mold after the moldable material has set.
- 2. A method according to claim 1, wherein producing the mold comprises forming the mold from a thermally-resilient deformable material.
- 3. A method for constructing a lens structure, the method comprising:
producing a mold so as to define a pliant lens cavity in which a lens portion of the lens structure is to be formed, the pliant lens cavity having an orifice having a transverse dimension less than a transverse dimension of the lens cavity for the lens portion; wherein the mold producing step comprises casting a first catalyzed crosslinkable liquid around a mold core in a form having uncut margins until it is set as the mold, thereafter removing the mold core from the mold after the first catalyzed crosslinkable liquid has set wherein a region of the mold adjacent the orifice is allowed to temporarily deform thereby to permit the spherical element to be removed with minimal damage to the mold; thereafter casting a second catalyzed crosslinkable liquid into the mold until it has set; and then removing the solid immersion lens portion from the mold after the second catalyzed crosslinkable liquid has set wherein the region of the mold adjacent the orifice is allowed to temporarily deform thereby to permit the solid immersion lens portion to be removed.
- 4. A method for constructing a lens structure, the method comprising:
producing a mold so as to define a pliant lens cavity in which a solid immersion lens portion of the solid immersion lens structure is to be formed, the pliant lens cavity having an orifice having a transverse dimension less than a transverse dimension of the lens cavity for the solid immersion lens portion; wherein the mold producing step comprises casting a first moldable material into a container to form a first layer from which the mold is to be formed and permitting the first layer to set, then positioning the mold core on the first layer, and then casting the first moldable material into the container to at least partially encapsulate the mold core, thereby to form a second layer immediately adjacent the first layer.
- 5. A method according to claim 4 wherein the generally spherical mold core protrudes from the upper surface of the first layer.
- 6. A method according to claim 5 further comprising casting a second moldable material from which at least the solid immersion lens portion of the solid immersion lens structure is to be formed into the container to fill not only the lens cavity, but also to form a layer in the container, the layer defining an upper surface above the lens cavity, such that the layer forms a body portion of the solid immersion lens structure when the second moldable material has set, the body portion then being integrally molded together with the solid immersion lens portion.
- 7. A method according to claim 6 further comprising coating the lens cavity and the upper surface of the mold with a release agent to inhibit adhesion of the solid immersion lens portion and the body portion of the solid immersion lens structure to the mold at the upper surface and in the lens cavity.
- 8. A method according to claim 6 further comprising forming a channel adjacent the layer defining the upper surface above the lens cavity before the first moldable material has set.
- 9. A method according to claim 4 wherein the first moldable material from which at least the first layer is formed comprises a silicone elastomer.
- 10. A method according to claim 9 wherein the second moldable material from which at least the lens portion is formed comprises a silicone elastomer.
- 11. A method for imaging an object, the method comprising:
guiding the object along a passage defined by an integrally molded together solid immersion lens structure, the solid immersion lens structure defining a body portion, in which the passage is defined, and a solid immersion lens portion, the solid immersion lens portion being optically aligned with a position in the passage; positioning the object in the passage at the position which is optically aligned with the solid immersion lens portion so that the object is within a field of view extending through the solid immersion lens portion; photoexciting the object in the passage to induce a photophysical reaction; and viewing the object in the passage through the solid immersion lens portion while the object is at the position in the passage which is optically aligned with the solid immersion lens portion.
- 12. A method as claimed in claims 11, wherein photoexciting the object through the solid immersion lens while at the position in the passage which is optically aligned with the solid immersion lens portion comprises optically aligning a microscope with the solid immersion lens portion, and viewing the object through the microscope.
- 13. An array of solid immersion lenses manufactured according to claim 1.
- 14. A microslide structure comprising:
an array of solid immersion lenses manufactured according to claim 1; and a specimen carrier disposed with specimen wells in an array aligned to match with said solid immersion lens array.
- 15. An optical display structure comprising:
an array of solid immersion lenses manufactured according to claim 1; and a display panel disposed with display elements in an array aligned to match with said solid immersion lens array.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation in part of and claims the benefit of copending U.S. application No. 09/640,907 filed Aug. 16, 2000, the entirety of which is herein incorporated by reference.
STATEMENT AS TO RIGHTS TO INVENTIONS MADE UNDER FEDERALLY SPONSORED RESEARCH AND DEVELOPMENT
[0002] The US Government has certain rights in this invention pursuant to Grant No. HG 01642 awarded by the National Institute of Health and under Contract No. PHY-9722417 of the National Science Foundation.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09640907 |
Aug 2000 |
US |
Child |
09928226 |
Aug 2001 |
US |