Optical analog numeric computation device
An optical numerical computation device relates light from a plurality of light sources to calculate an arithmetic solution. The optical numerical computation device includes input circuitry, pre-calculation circuitry, calculation circuitry, a light collection cavity, and a plurality of light computation components. The pre-calculation circuitry and calculation circuitry cause light sources to emit light representing the values of input operands, which is subsequently related within the light collection cavity. Sensors then generate resultant outputs at values indicative of the sensed light value. The respective wavelength of light emitted from or sensed by each light computation component may be associated with an operand arithmetic sign.
1. A light collection device comprising:
an enclosed, ball-shaped, substantially spherical light cavity;
a plurality of light emitters disposed internally on an inner surface of the light cavity;
one or more light sinks disposed internally on the inner surface of the light cavity;
the inner surface being devoid of openings that admit light from other than the plurality of light emitters; and
the interior space of the light cavity being free of interposed components.
2. The light collection device of claim 1 , further comprising an external light source, wherein:
one or more of the plurality of light emitters is driven by the external light source; and
the external light source is one of a LED and a coherent light source.
3. The light collection device of claim 1 , wherein one or more of the plurality of light emitters is one of a LED and a coherent light source.
4. The light collection device of claim 1 , further comprising an external light receiver, wherein:
at least one of the one or more of the light sinks is coupled to an external light receiver; and
the external light receiver is one of a photoresistor and a photodiode.
5. The light collection device of claim 1 , wherein at least one of the one or more light sinks is one of a photoresistor and a photodiode.
6. The light collection device of claim 1 , wherein the plurality of light emitters and the one or more light sinks are all disposed in an arc of 100 degrees or less.
7. The light collection device of claim 1 , wherein the plurality of light emitters and the one or more light sinks are on a same hemisphere of the inner surface of the light cavity.
8. The light collection device of claim 1 , wherein the plurality of light emitters and the one or more light sinks are configured so that light from the plurality of light emitters travels through the free space directly to the one or more light sinks.
9. The light collection device of claim 1 , wherein at least part of the interior of the light collection cavity is defined by two or more adjacent substrates.