摘要:
Methods and apparatus for splitting light received from at least one subject into at least first and second components of light, converting the first component of light into a first electrical signal representing a base image of the at least one subject, dispersing the second component of light into at least a right component of light and a left component of light; converting the right component of light into a second electrical signal representing a right detection image at a first angle; and converting the left component of light into a third electrical signal representing a left detection image at a second angle different from the first angle. Additionally, the right detection image may be used to transform the base image into a right parallax image, and the left detection image may be used to transform the base image into a left parallax image.
摘要:
Fractal structures are grown from a plurality of start sites. The fractal structures growing from their respective start sites progress their growth while interacting with each other to form fractal structures coupled to each other and create a neural network. Growth rate from a specific start site is determined by the probability that a material reaches a portion already grown from a remote site in a diffusion process and the probability that a growth promotion factor reaches the portion already grown from portions grown from the other start sites in the diffusion process. Anisotropy, if necessary, may be introduced into the space where the fractal structures are grown.
摘要:
An optical and/or electronic device is operated by degeneracy of density of states caused by confinement of electrons in a fractal region having a self-similarity. An AlGaAs/GaAs light emitting device is configured by distributing GaAs quantum dots in a fractal arrangement and confining them in i-type AlGaAs. A single-electron state of the quantum dot array exhibits degeneracy of density of states. Further, a strong quantum chaos is generated to bring about degeneracy of density of states by applying a random magnetic field by addition of a magnetic impurity to the region having a self-similarity.
摘要:
[Object] To capture a high-quality 3D image having an appropriate parallax level and a small chromatic aberration. [Solving Means] A light ray output from a subject is separated into left and right light rays by mirrors 141 and 143 in an area in which a diverging light ray output from a point of the subject is converted into a parallel light ray. When the subject is looked at from the right side, the light ray is reflected by the mirror 141 and is further reflected by the mirror 142. When the subject is looked at from the left side, the light ray is reflected by the mirror 143 and is further reflected by the mirror 144. The right light ray reflected by the mirror 142 is made incident on the image forming lens 151. The light ray made incident on the image forming lens 151 forms an image on a light receiving surface of an imaging device 171. The left light ray reflected by the mirror 144 is made incident on an image forming lens 152. The light ray made incident on the image forming lens 152 forms an image on a light receiving surface of an imaging device 172. In this way, a high-quality 3D image having an appropriate parallax level and a small chromatic aberration is captured.
摘要:
[Object] To capture a high-quality 3D image having an appropriate parallax level and a small chromatic aberration. [Solving Means] A light ray output from a subject is separated into left and right light rays by mirrors 141 and 143 in an area in which a diverging light ray output from a point of the subject is converted into a parallel light ray. When the subject is looked at from the right side, the light ray is reflected by the mirror 141 and is further reflected by the mirror 142. When the subject is looked at from the left side, the light ray is reflected by the mirror 143 and is further reflected by the mirror 144. The right light ray reflected by the mirror 142 is made incident on the image forming lens 151. The light ray made incident on the image forming lens 151 forms an image on a light receiving surface of an imaging device 171. The left light ray reflected by the mirror 144 is made incident on an image forming lens 152. The light ray made incident on the image forming lens 152 forms an image on a light receiving surface of an imaging device 172. In this way, a high-quality 3D image having an appropriate parallax level and a small chromatic aberration is captured.
摘要:
The invention relates to an imaging apparatus, an imaging method, a recording medium, and a program which are capable of processing imaging data of a rate in a manner similar to that of a normal frame rate. Image data captured by a solid-state imaging element capable of performing imaging at a high resolution and a high frame rate is supplied to a memory control unit 23. The memory control unit 23, at the same time as writing the imaging data input from the imaging element 22 in a frame memory 24, reads preceding frames of imaging data that are recorded on the frame memory 24, and sequentially respectively outputs them in parallel, as video image data items indicated by b to e in the figures, for each frame, to respective camera signal processing units 25. Then, in the camera signal processing units 25, a video output unit 26, a viewfinder output unit 27, codec units 28, and recording units 29, processing similar to that in the case of a frame rate that is 1/4 the imaging frame rate is executed. The present invention can be applied to an imaging apparatus.