摘要:
A lens element 1 is formed by making use of an optical substrate, and includes a lens portion 2, an edge portion 6 in the form of a circular arc provided along the circumference of the lens portion 2, and a handling portion 4 which is integrated with the lens portion 2 and the edge portion 6 as well and extends with a width wider than that of the lens portion 2. The handling portion 4 can be caught and held by chucking vacuum suction and so forth. The lens element 1 can be handled by catching the handling portion 4 without directly touching the lens element 1, and thus the lens element 1 is neither damaged nor contaminated, and stably handled with ease.
摘要:
A method for forming many microlenses comparatively easily and effectively is provided. On one end of an optical substrate is formed a plurality of lens planes at regular intervals. Lens areas containing the lens planes are partially covered by an etching mask and etching processing is performed on areas being exposed outside the etching mask to remove the areas to a specified depth. While the lens planes formed on one surface of the optical substrate are being held by a support substrate, polishing processing is performed on another end face of the optical substrate and each microlens formed in the lens areas is separated from the support substrate.
摘要:
An optical lens device assembly containing an optical lens device and an optical device sealed without causing complication of optical module configurations is provided. In the optical lens device assembly, a resin member having light transmittance is used to fill in space between the optical lens device and the optical device to be optically coupled to the optical lens device. The resin member is made from a resin material having a refractive index being different from that of the optical lens device. The resin member is used to seal a clearance between optical planes, which face each other, of the optical lens device and the optical device, and to mechanically couple the optical lens device to the optical device.
摘要:
A polymer pattern forming method including the steps of (a) generating radicals in a pattern forming region of a matrix layer which uniformly contains a radical generating agent, thereby forming a patterned latent image due to the radicals in the pattern forming region; and (b) bringing a monomer which polymerizes by radical polymerization into contact with the matrix layer in which the patterned latent image has been or is being formed, to have the radicals which have been or are being generated induce a chain addition polymerization of the monomer so as to form a polymer pattern on the pattern forming region.
摘要:
A method of fabricating a microlens that serves to prevent damage thereto in the fabrication process is provided. First, a lens body of which the maximum height housed within a recess is lower than the height of the side wall of the recess is formed in the lens formation region by performing patterning that transfers the shape of a first resist pattern to a substrate by using the first resist pattern as an etching mask. Thereafter, a partial region of the substrate which is outside the lens formation region is removed to form an outline by using a second resist pattern as a mask.
摘要:
A new and improved optical element manufacturing method, through which lens elements can be efficiently mounted on a silicon V-shaped groove substrate at lower manufacturing costs, is provided. The method comprises a lens element forming step in which an oxide layer 104 is formed at a supporting layer 102 and lens elements 120 are formed at the upper surface of the silicon oxide film, a coating step in which a solder connection metal film is coated onto the side surfaces of the lens elements and a separating step in which the lens elements are separated by removing the silicon oxide film. Through this method, the solder connection metal film can be formed with ease at the sidewalls of the lens elements. The lens elements with the solder connection metal film formed at the side walls thereof can easily be soldered onto a supporting substrate.
摘要:
The diffraction optical element production method includes a first step of etching an area which becomes a seventh step of a seven-step staircase shape and an area which becomes a third step of a three-step staircase shape by a depth 2L; a second step of etching areas which become second, fourth, and sixth steps of the seven-step staircase shape and an area which becomes a first step of the three-step staircase shape by a depth L; a third step of etching areas which become fifth to seventh steps of the seven-step staircase shape and areas which become second and third steps of the three-step staircase shape by the depth 2L; and a fourth step of etching areas which become third to seventh steps of the seven-step staircase shape and areas which become second and third steps of the three-step staircase shape by the depth 2L.
摘要:
A new and improved optical element manufacturing method, through which lens elements can be efficiently mounted on a silicon V-shaped groove substrate at lower manufacturing costs, is provided. The method comprises a lens element forming step in which an oxide layer 104 is formed at a supporting layer 102 and lens elements 120 are formed at the upper surface of the silicon oxide film, a coating step in which a solder connection metal film is coated onto the side surfaces of the lens elements and a separating step in which the lens elements are separated by removing the silicon oxide film. Through this method, the solder connection metal film can be formed with ease at the sidewalls of the lens elements. The lens elements with the solder connection metal film formed at the side walls thereof can easily be soldered onto a supporting substrate.
摘要:
A lens element 1 is formed by making use of an optical substrate, and includes a lens portion 2, an edge portion 6 in the form of a circular arc provided along the circumference of the lens portion 2, and a handling portion 4 which is integrated with the lens portion 2 and the edge portion 6 as well and extends with a width wider than that of the lens portion 2. The handling portion 4 can be caught and held by using a grasping means, a vacuum sucking means and so forth. With this, the lens element 1 can be handled by catching the handling portion 4 without directly touching the lens element 1, thus the lens element 1 being neither damaged nor contaminated, and being stably handled with ease.
摘要:
Information is recorded by applying weak and strong magnetic fields to a giant magnetoresistive medium having a pair of ferromagnetic layers, a nonmagnetic interlayer, and an antiferromagnetic layer. The medium preferably has a magnesium-oxide base layer, and may also have an electrode layer. The weak magnetic field magnetizes the ferromagnetic layers in the antiparallel state. The strong magnetic field magnetizes the ferromagnetic layers in the parallel state, which has lower electrical resistance than the antiparallel state. The recorded information is reproduced by detecting the electrical resistance of the medium, either between two electrodes contacting the surface of the medium, or between the electrode layer in the medium and an electrode contacting the surface of the medium.