OPTICAL ELEMENT, IMAGE SENSOR AND IMAGING DEVICE
An optical element includes a transparent layer for covering a plurality of pixels each including a photoelectric conversion element, and a plurality of structure members disposed on the transparent layer or in the transparent layer, the structure members being arranged in a plane direction of the transparent layer. The plurality of structure members is arranged to condense light of colors corresponding to respective pixels of the plurality of pixels into the corresponding pixels, the light of the colors being of incident light.
1 . An optical element comprising:
a transparent layer for covering a plurality of pixels each including a photoelectric conversion element; and
a plurality of structure members disposed on the transparent layer or in the transparent layer, the structure members being arranged in a plane direction of the transparent layer, wherein
the plurality of structure members is arranged to condense light of colors corresponding to respective pixels of the plurality of pixels into the corresponding pixels, the light of the colors being of incident light.
2 . The optical element according to claim 1 , wherein
each structure member of the plurality of structure members is a columnar structure member that has a higher refractive index than a refractive index of the transparent layer, and gives incident light an optical phase delay amount corresponding to a cross-sectional shape of the structure member when the transparent layer is viewed in a planar view,
the plurality of structure members is arranged in accordance with an optical phase delay amount distribution for realizing the light condensing, and
a cross-sectional shape of each structure member of the plurality of structure members is a four-fold rotationally symmetrical shape.
3 . (canceled)
4 . The optical element according to claim 1 , wherein
a cross-sectional shape of each structure member of the plurality of structure members when the transparent layer is viewed in a planar view is designed, and the plurality of structure members is arranged to condense light of a color corresponding to one pixel into the one pixel, the light of the color being of light entering an outside of a region facing the one pixel.
5 . The optical element according to claim 1 , wherein
the plurality of pixels includes a pixel unit that is formed with one pixel corresponding to red, two pixels corresponding to green, and one pixel corresponding to blue that are arranged in a Bayer array, and
among the plurality of structure members, a plurality of structure members disposed in a region facing one of the pixels corresponding to green in the pixel unit has an overall layout structure formed by rotating 90° an overall layout structure of a plurality of structure members disposed in a region facing another one of the pixels corresponding to green.
6 . (canceled)
7 . (canceled)
8 . (canceled)
9 . The optical element according to claim 1 , wherein
the plurality of pixels includes a pixel unit that is formed with one pixel corresponding to red, two pixels corresponding to green, and one pixel corresponding to blue that are arranged in a Bayer array,
among the plurality of structure members, a plurality of structure members disposed in a region facing the pixel corresponding to red in the pixel unit has an overall layout structure in a four-fold rotationally symmetrical shape, and
among the plurality of structure members, a plurality of structure members disposed in a region facing the pixel corresponding to blue in the pixel unit has an overall layout structure in a four-fold rotationally symmetrical shape.
10 . An imaging device comprising:
the optical element according to claim 1 ; and
the plurality of pixels covered with the transparent layer.
11 . The imaging device according to claim 10 , further including
a filter layer disposed between the plurality of pixels and the transparent layer.
12 . An imaging apparatus comprising:
the imaging device according to claim 10 ; and
a signal processing unit configured to generate an image signal on a basis of an electrical signal obtained from the imaging device.