A variety of structures, methods, systems, and configuration scan support plasmons for routing.
1. A plasmon router comprising:
a first plasmon input port receptive to an input signal including plasmon energy;
a plurality of plasmon output ports transmissive of output signals including plasmon energy; and
a control structure intermediate to the first plasmon input port and the plurality of plasmon output ports, the control structure being configured to selectively direct plasmon energy to one or more of the plasmon output ports responsive to a control signal portion of the input signal.
2. The plasmon router of claim 1 wherein the control structure includes processing circuitry.
3. The plasmon router of claim 2 wherein the processing circuitry includes a microprocessor.
4. The plasmon router of claim 2 wherein the processing circuitry includes electronic components.
5. The plasmon router of claim 2 wherein the processing circuitry includes routing logic.
6. The plasmon router of claim 1 wherein the control structure includes a first energy generator.
7. The plasmon router of claim 1 wherein the control structure includes a first plasmon switch.
8. The plasmon router of claim 6 wherein the control structure includes a second energy generator.
9. The plasmon router of claim 7 wherein the control structure includes a second plasmon switch.
10. The plasmon router of claim 1 further comprising a delay structure.
11. The plasmon router of claim 10 wherein the delay structure is configured to delay the input signal.
12. The plasmon router of claim 10 wherein the delay structure is configured to delay one or more of the output signals.
13. The plasmon router of claim 1 wherein the control structure includes a memory.
14. The plasmon router of claim 1 further comprising a converter.
15. The plasmon router of claim 14 wherein the converter is configured to provide plasmon energy to the first plasmon input port.
16. The plasmon router of claim 14 wherein the converter is receptive to plasmon energy at one or more of the plurality of output ports, and transmissive of a different form of energy.
17. The plasmon router of claim 16 wherein the different form of energy is electrical energy.
18. The plasmon router of claim 16 wherein the different form of energy is electromagnetic energy.
19. The plasmon router of claim 1 wherein the control structure is further configured to selectively block plasmon energy from one or more of the plasmon output ports.
20. The plasmon router of claim 1 wherein the input signal includes a header portion and wherein the header portion of the input signal includes the control signal portion of the input signal.