Model eye producing a speckle pattern having a reduced bright-to-dark ratio
View Patent ↗A model eye includes an optically transmissive structure having a front curved surface to receive a coherent light beam, and an opposite rear planar surface for directing a portion of the coherent light beam back out the model eye through the front curved surface; and a material structure adhered to the rear planar surface of the optically transmissive structure that has a characteristic to cause a speckle pattern of the portion of the coherent light beam that is directed back out the front curved surface of the optically transmissive structure to have a bright-to-dark ratio of less than 2:1. In some embodiments, the material structure may include a fabric-reinforced polyethylene tape adhered to the rear planar surface of the optically transmissive structure by an adhesive. One example material structure which may be employed is duct tape.
1. A method, comprising:
providing a model eye comprising an optically transmissive structure having a front curved surface and an opposite rear planar surface, and a material structure adhered to the rear planar surface of the optically transmissive structure;
directing a coherent light beam through the front curved surface of the optically transmissive structure to the opposite rear planar surface;
receiving at a measurement instrument a portion of the light returned from the rear planar surface of the optically transmissive structure, wherein the material structure has a characteristic to cause the light received by the measurement instrument from the rear planar surface of the optically transmissive structure to have a speckle pattern with bright-to-dark ratio of less than 2:1.
2. The method of claim 1 , wherein the material structure comprises a fabric-reinforced polyethylene pressure-sensitive tape adhered to the rear planar surface of the optically transmissive structure by an adhesive.
3. The method of claim 1 , wherein the material structure comprises at least two layers of optically transmissive adhesive tape with a material having a plurality of light scattering particles disposed between the at least two layers of optically transmissive adhesive tape.
4. The method of claim 1 , wherein the material structure comprises a plurality of layers of optically transmissive adhesive tape with a plurality of pencil marks on each successive layer of the optically transmissive adhesive tape.
5. The method of claim 1 , wherein the material structure comprises a layer of optically transmissive paint with light scattering particles embedded within.
6. The method of claim 1 , wherein the material structure comprises a caulking material with a gauze material applied thereto.