Claims
- 1. A method of providing at least one phase-modulated output from at least one amplitude-modulated input comprising the following steps:
- providing a bias beam set having at least one beam of energy of at least one wavelength maintained at a substantially constant level;
- providing at least one input beam set, having at least one amplitude-modulated beam of energy of said at least one wavelength out of phase with said bias beam set, and having an energy sum;
- superpositioning said bias beam set with said at least one input beam set to produce interference at at least one location when both said beam sets are on, and
- separating energy from said at least one location to provide at least one phase modulated output,
- thereby providing an amplitude modulation-to-phase modulation converter wherein the phase of said at least one phase-modulated output has a first phase when said energy sum is greater than the level of said bias beam set, and has a second phase when said energy sum is smaller than said bias beam set.
- 2. The invention of claim 1 including:
- providing a plurality of said at least one input beam sets as AND inputs amplitude-modulated with binary information, said energy sum of said AND inputs being greater than said substantially constant level of said bias beam set when all said AND inputs are on and less than said substantially constant level of said bias beam set when one of said AND inputs is off and the remainder of said AND inputs are on,
- thereby providing a multi-input AND with a phase-modulated output having said first phase only when all said AND inputs are on.
- 3. The invention of claim 1 including:
- providing a plurality of said at least one input beam sets as OR inputs amplitude modulated with binary information, said energy sum of said OR inputs being greater than said substantially constant level of said bias beam set when at least one of said OR inputs is on,
- thereby providing a multi-input OR by producing an output having said first phase when at least one of said OR inputs is on.
- 4. A method of providing the logical NAND function comprising the following steps:
- providing a bias beam set having at least one beam of energy of at least one wavelength maintained at a substantially constant level;
- providing a plurality of input beam sets, each having at least one amplitude-modulated beam of energy of said at least one wavelength out of phase with said bias beam set, and having an energy sum, said energy sum being substantially equal to said substantially constant level of said bias beam set when all of said plurality of input beam sets are on;
- superpositioning said bias beam set with said plurality of input beam sets to produce interference at at least one location when both said beam sets are on, and
- separating energy from said at least one location to provide at least one output,
- thereby providing a logical NAND function by producing a low output when all of said plurality of input beam sets are on, and a higher output level when at least one of said plurality of input beam sets is off.
- 5. An amplitude modulation-to-phase modulation converter for use with wave energy comprising:
- a bias beam set having at least one substantially constant level beam of energy of at least one wavelength, directed toward a first location;
- at least one input beam set having at least one amplitude-modulated beam of energy of said at least one wavelength, directed toward said first location, said at least one amplitude-modulated beam of energy being out of phase with said bias beam set and having an energy sum, said bias beam set and said at least one input beam set producing interference at said first location when both are on, and
- an image component separator positioned at said first location for separating energy from said first location to provide at least one phase-modulated output,
- thereby providing an amplitude modulation-to-phase modulation converter wherein the phase of said at least one phase-modulated output has a first phase when said energy sum is greater than the level of said bias beam set, and has a second phase when said energy sum is smaller than said bias beam set.
- 6. The invention of claim 5, including:
- a plurality of said at least one input beam sets, said plurality of said at least one input beam sets and said bias beam set each being of a level such that, when said plurality of said at least one input beam sets are amplitude-modulated with binary information, said energy sum of said plurality of said input beam sets is greater than said substantially constant level of said bias beam set when all of said plurality of said at least one input beam sets are on and less than said substantially constant level of said bias beam set when at least one of said plurality of said at least one input beam sets is off,
- thereby providing a multi-input AND with a phase-modulated output having said first phase only when all of said plurality of said at least one input beam sets are on.
- 7. The invention of claim 5, including:
- a plurality of said at least one input beam sets, said plurality of said at least one input beam sets and said bias beam set each being of a level such that, when said plurality of said at least one input beam sets are amplitude-modulated with binary information and when at least one of said plurality of said at least one input beam sets is on, said energy sum of said plurality of said at least one input beam sets is greater than said substantially constant level of said bias beam set
- thereby providing a multi-input OR with an output having said first phase when at least one of said plurality of said at least one input beam sets is on.
- 8. A logical NAND which utilizes wave energy, comprising:
- a bias beam set having at least one beam of energy of at least one wavelength, maintained at a substantially constant level, directed toward a first location;
- a plurality of input beam sets, directed toward said first location, each having at least one amplitude-modulated beam of energy of said at least one wavelength, out of phase with said bias beam set and an energy sum, said energy sum being substantially equal to said substantially constant level of said bias beam set when all of said plurality of input beam sets are on, said bias beam set and said plurality of input beam sets producing interference at said first location, and
- an image component separator positioned at said first location for separating energy from said first location to provide at least one output,
- thereby producing a low output when all of said plurality of input beam sets are on and a higher output when at least one of said plurality of input beam sets is off.
REFERENCE DATA
This application is a continuation-in-part of U.S. application Ser. No. 08/357,460, filed Dec. 16, 1994.
US Referenced Citations (10)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
357460 |
Dec 1994 |
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